Conception d'un système de programmation et de commande de robots mobiles par apprentissage

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Total Pages : 182 pages
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Book Synopsis Conception d'un système de programmation et de commande de robots mobiles par apprentissage by : Catherine Rafflin

Download or read book Conception d'un système de programmation et de commande de robots mobiles par apprentissage written by Catherine Rafflin and published by . This book was released on 1995 with total page 182 pages. Available in PDF, EPUB and Kindle. Book excerpt: CETTE THESE PRESENTE UN SYSTEME DE PROGRAMMATION ET DE COMMANDE DE ROBOTS MOBILES PAR APPRENTISSAGE. DANS LE BUT D'ASSURER LA FAISABILITE DES MISSIONS, NOUS AVONS MIS AU POINT UNE METHODE D'APPRENTISSAGE DES TRAJECTOIRES GRACE A LAQUELLE LE ROBOT CONNAIT D'UNE PART, LES CHEMINS DES MISSIONS ET D'AUTRE PART, LES ACTIONS A ACCOMPLIR. L'ORIGINALITE DE LA METHODE RESIDE DANS L'UTILISATION CONJOINTE D'UNE BASE DE DONNEES DE TRAJECTOIRES APPRISES ET D'INFORMATIONS DELIVREES EN LIGNE PAR LES CAPTEURS, DE FACON A AUTORISER DES MANUVRES TELLES QUE LE RECALAGE DU ROBOT OU LES EVITEMENTS D'OBSTACLES. DANS LE PREMIER CHAPITRE, NOUS POSONS LE PROBLEME DE LA COMMANDE DE ROBOTS MOBILES EN ENVIRONNEMENT INTERIEUR, TANT SUR LE PLAN DES STRATEGIES DE NAVIGATION QUE SUR LE PLAN DES SYSTEMES DE LOCALISATION OU DES STRUCTURES DE COMMANDE. DANS LE DEUXIEME CHAPITRE, NOUS PRESENTONS LA PHASE D'ACQUISITION DES TRAJECTOIRES. PENDANT CETTE ETAPE PRINCIPALE, LE ROBOT EST TELEOPERE TANDIS QUE SON SYSTEME DE LOCALISATION EST ACTIF ET DELIVRE DES INFORMATIONS QUI SONT TRAITEES PUIS MEMORISEES SOUS FORME DE FICHIERS D'APPRENTISSAGE. L'EXECUTION D'UNE TRAJECTOIRE APPRISE NECESSITE D'UNE PART, UNE GENERATION DE MOUVEMENT QUI UTILISE AUSSI BIEN DES POINTS ACQUIS EN LIGNE QUE DES POINTS ACQUIS PENDANT LA PHASE D'APPRENTISSAGE, ET D'AUTRE PART, LE CALCUL DES VARIABLES DE COMMANDE POUR LE ROBOT CONSIDERE. NOUS DECRIVONS L'UNE ET L'AUTRE DANS LE TROISIEME CHAPITRE. LE QUATRIEME CHAPITRE PRESENTE TOUS LES OUTILS NECESSAIRES A L'APPRENTISSAGE DES TRAJECTOIRES D'UN ENSEMBLE DE MISSIONS TELS QUE LA STRUCTURATION DES CHEMINS, LA VALIDATION ET LA CORRECTION EVENTUELLE DES FICHIERS D'APPRENTISSAGE, LA GESTION DE L'ENCHAINEMENT DES PHASES, L'INTERFACE HOMME/MACHINE, LA PROGRAMMATION DES ACTIONS DU ROBOT. NOUS AVONS IMPLANTE LE SYSTEME COMPLET DE PROGRAMMATION ET DE COMMANDE PAR APPRENTISSAGE SUR LE ROBOT DU PROJET FIRST, DEDIE AU TRANSPORT DE CHARGES EN MILIEU HOSPITALIER. DANS LE DERNIER CHAPITRE, NOUS PRESENTONS CE PROJET, L'IMPLANTATION DU SYSTEME ET LES DIFFERENTS ESSAIS EFFECTUES

Conception d'un systeme de programmation et de commande de robots mobiles par apprentissage

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (494 download)

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Book Synopsis Conception d'un systeme de programmation et de commande de robots mobiles par apprentissage by : Catherine Rafflin

Download or read book Conception d'un systeme de programmation et de commande de robots mobiles par apprentissage written by Catherine Rafflin and published by . This book was released on 1995 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Étude et réalisation d'un système de programmation et de commande de robot mobile autonome

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ISBN 13 :
Total Pages : 162 pages
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Book Synopsis Étude et réalisation d'un système de programmation et de commande de robot mobile autonome by : Elkébir Badi

Download or read book Étude et réalisation d'un système de programmation et de commande de robot mobile autonome written by Elkébir Badi and published by . This book was released on 1989 with total page 162 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cette thèse présente deux systèmes importants pour les robots mobiles. Un premier système de commande est d'abord détaillé L’étude et la réalisation de l'architecture matérielle en constitue une première partie. Une étude des trajectoires et des mouvements correspondants en constitue une seconde partie. Une étude de l'asservissement optimise ensuite le suivi par le robot des trajectoires imposées. Cette étude est effectuée dans le cas discret. Le lissage des trajectoires pour obtenir un mouvement continu est effectué par l'utilisation de clothoïdes. Ce système de commande est organisé autour d'un noyau de primitives de déplacements, d'informations et de sécurité. Les performances du système sont testées sur un robot mobile réel mithra de type a (projedt MITHRA/EUREKA). Le second système traite de la programmation du robot mobile autonome. Trois modes de programmation sont mises au point: 1) l'apprentissage, relevé direct de la trajectoire suivi par le robot (moteurs débrayés) poussé par un opérateur; 2) la modélisation topologique, transformation du domaine d’évolution du robot mobile en un graphe de points d'emplacements stratégiques, le suivi d'une trajectoire par le robot revient à la recherche du chemin correspondant dans un graphe; 3) la méthode mixte, coopération des deux modes précédents pour accomplir une mission donnée Les sorties de ces trois modes sont transformées par un générateur de mouvements en primitives exécutables par le système de commande.

Conception et implantation d'un système de programmation de robots

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ISBN 13 :
Total Pages : 149 pages
Book Rating : 4.:/5 (537 download)

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Book Synopsis Conception et implantation d'un système de programmation de robots by : Jean-François Miribel

Download or read book Conception et implantation d'un système de programmation de robots written by Jean-François Miribel and published by . This book was released on 1984 with total page 149 pages. Available in PDF, EPUB and Kindle. Book excerpt: On décrit la conception et l'implantation d'un système de programmation de robots. Ce système combine un langage de programmation textuel, le langage LM, et un environnement de développement et de mise au point de programmes: programmation par apprentissage, simulation graphique, programmation géométrique, planification de trajectoires. On détaille la structure interne du langage LM et son implantation, ainsi que les fonctionnalités des différents modules d'environnement. Le système a donné lieu à plusieurs implantations industrielles et à de nombreuses expérimentations

LMAD-G

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ISBN 13 :
Total Pages : 172 pages
Book Rating : 4.:/5 (49 download)

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Book Synopsis LMAD-G by : Hervé Guyennet

Download or read book LMAD-G written by Hervé Guyennet and published by . This book was released on 1985 with total page 172 pages. Available in PDF, EPUB and Kindle. Book excerpt: CE PROCESSEUR D'APPRENTISSAGE PERMET: DE CONCEVOIR UN CHEMIN A L'AIDE D'UNE REPRESENTATION POLYEDRIQUE 30 DU DOMAINE ATTEIGNABLE DU ROBOT ET D'UN CERTAIN NOMBRE DE PRIMITIVES GRAPHIQUES DE MANIPULATION DE TRAJECTOIRE; A PARTIR DE CE CHEMIN DE GENERER AUTOMATIQUEMENT UN PROGRAMME DE COMMANDE DU ROBOT A L'AIDE D'UN GENERATEUR DE SEQUENCES PROGRAMMEES; DE DETECTER LA COMMENDE DU ROBOT ET DE RESTITUER GRAPHIQUEMENT LA TRAJECTOIRE REELLEMENT SUIVIE A PARTIR D'INFORMATIONS PRISES SUR LES CAPTEURS PROPRIOCEPTIFS; DE COMPARER CETTE TRAJECTOIRE AVEC CELLE INITIALEMENT DEMANDEE ET DE METTRE EN OEUVRE DES ALGORITHMES DE CORRECTION, CECI AFIN DE GENERER UN NOUVEAU PROGRAMME. POUR CELA, ON UTILISE LA FONCTIONNALITE DE DIAGNOSTIC ET DE DECISION DU GENERATEUR DE PLAN D'ACTION.

Conception d'un logiciel de programmation graphique des robots d'assemblage

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ISBN 13 :
Total Pages : 376 pages
Book Rating : 4.:/5 (373 download)

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Book Synopsis Conception d'un logiciel de programmation graphique des robots d'assemblage by : Ali Kalakech

Download or read book Conception d'un logiciel de programmation graphique des robots d'assemblage written by Ali Kalakech and published by . This book was released on 1991 with total page 376 pages. Available in PDF, EPUB and Kindle. Book excerpt: On présente dans cette thèse une méthode de programmation des robots d'assemblage par l'utilisation de moyens graphiques. Cette méthode consiste à simuler, dans un premier temps, l'espace de travail du robot sur l'écran d'un ordinateur. Chaque élément de l'univers est présentée sur les quatre quadrants de l'écran, par ses trois vues du dessin industriel et par une quatrième vue perspective globale. Ensuite, on procède au montage automatique de l'assemblage sans tenir compte des contraintes physiques dues aux collisions: les graphes représentant les composants sont assemblés sur l'écran et l'assemblage final est totalement défini. Dans une troisième étape, on procède à une phase d'apprentissage graphique par démontage interactif des composants dans l'ordre inverse de leur montage, et cela en tenant compte des contraintes physiques. L'opérateur lance des commandes de déplacements élémentaires. Le calculateur interprète ces commandes en calculant les effets de collisions. Il valide et exécute uniquement les commandes qui sont physiquement réalisables. Ce cycle interactif est répété jusqu'au démontage complet de tous les composants de l'assemblage. Finalement, une simple inversion du cycle et des trajectoires de parcours trouvées lors de la phase d'apprentissage, permet à un générateur de plan de programmer les tâches d'assemblage (trajectoires de parcours, points et modes de préhension des composants, leurs positions finales et initiales...). Une application portant sur une gamme d'assemblage de moteurs électriques est présentée en dernière partie de cette thèse

Étude et réalisation d'un système de commande de robots industriels dans un environnement de programmation LM

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ISBN 13 :
Total Pages : 346 pages
Book Rating : 4.:/5 (494 download)

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Book Synopsis Étude et réalisation d'un système de commande de robots industriels dans un environnement de programmation LM by : Meftah Ghrissi

Download or read book Étude et réalisation d'un système de commande de robots industriels dans un environnement de programmation LM written by Meftah Ghrissi and published by . This book was released on 1988 with total page 346 pages. Available in PDF, EPUB and Kindle. Book excerpt: ANALYSE FONCTIONNELLE DES COMMANDES DES ROBOTS INDUSTRIELS AYANT POUR BUT LA PROGRAMMATION DES SYSTEMES DE COMMANDE, LA GENERATION DES LOIS DU MOUVEMENT ET LES CONCEPTIONS DE COMMANDE. SIMPLIFICATION DU MODELE DYNAMIQUE DE LA COMMANDE ET CONCEPTION MATERIELLE ET LOGICIELLE DE LA COMMANDE ADAPTEE A CE MODELE

Contribution à l'étude et à la réalisation d'un système de programmation des robots industriels

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ISBN 13 :
Total Pages : 263 pages
Book Rating : 4.:/5 (489 download)

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Book Synopsis Contribution à l'étude et à la réalisation d'un système de programmation des robots industriels by : Christian Forestier

Download or read book Contribution à l'étude et à la réalisation d'un système de programmation des robots industriels written by Christian Forestier and published by . This book was released on 1989 with total page 263 pages. Available in PDF, EPUB and Kindle. Book excerpt: CE MEMOIRE A POUR OBJET L'ETUDE D'UN SYSTEME DE PROGRAMMATION DE TACHE ET DE CONDUITE D'UN ROBOT INDUSTRIEL, PAR LE BIAIS D'UN DIALOGUE HOMME-MACHINE TOTALEMENT GRAPHIQUE. CE SYSTEME INTEGRE EGALEMENT LES PRIMITIVES FONDAMENTALES DE DECISION, ASSURANT AINSI UNE RELATION DIRECTE AVEC TOUT SYSTEME DE COMMANDE A ARCHITECTURE DECENTRALISEE. L'AUTEUR MODELISE L'ENSEMBLE DE LA COMMANDE ET DE LA PROGRAMMATION DU ROBOT PAR TROIS MACHINES (MACHINES D'EXECUTION, DE RELATION ET DE CREATION), CE QUI LUI PERMET DE SPECIFIER LES CARACTERISTIQUES FONDAMENTALES DU SYSTEME DE PROGRAMMATION DE TACHE ET DE CONDUITE. LA DESCRIPTION DES TACHES EST ENTIEREMENT GRAPHIQUE, NOTAMMENT GRACE A L'INTRODUCTION DE LA NOTION DE MACRO-TRAJECTOIRE, QUI PERMET DE SPECIFIER TOUT A LA FOIS LE DEPLACEMENT ET LES ORIENTATIONS DES OBJETS MANIPULES. L'ENSEMBLE DE CES RESULTATS A CONDUIT A LA REALISATION D'UN LOGICIEL COMPLET DE PROGRAMMATION ET CONDUITE, INTEGRANT UN SYSTEME GRAPHIQUE INTERACTIF DE DIALOGUE HOMME/MACHINE, AUTORISANT AUSSI BIEN DES ACTIONS A EXECUTION IMMEDIATE, QU'A EXECUTION DIFFEREE

CONCEPTION, MODELISATION ET COMMANDES DYNAMIQUES D'UN ROBOT MOBILE AUTONOME MODULAIRE. APPLICATION A UN ENVIRONNEMENT NON CONTRAINT

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ISBN 13 :
Total Pages : 130 pages
Book Rating : 4.:/5 (492 download)

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Book Synopsis CONCEPTION, MODELISATION ET COMMANDES DYNAMIQUES D'UN ROBOT MOBILE AUTONOME MODULAIRE. APPLICATION A UN ENVIRONNEMENT NON CONTRAINT by : PASCAL.. RUAUX

Download or read book CONCEPTION, MODELISATION ET COMMANDES DYNAMIQUES D'UN ROBOT MOBILE AUTONOME MODULAIRE. APPLICATION A UN ENVIRONNEMENT NON CONTRAINT written by PASCAL.. RUAUX and published by . This book was released on 1998 with total page 130 pages. Available in PDF, EPUB and Kindle. Book excerpt: L'OBJET DE CETTE THESE EST L'ETUDE DE LA CONCEPTION, DE LA REALISATION, DE LA MODELISATION ET DE LA COMMANDE D'UN ROBOT MOBILE A ROUES AUTONOME MODULAIRE. APRES AVOIR EFFECTUE QUELQUES RAPPELS SUR LES DIFFICULTES RENCONTREES LORS DE L'ETUDE DE CE TYPE DE STRUCTURE, SONT PRESENTES ENTRE AUTRES LES AVANTAGES ET LES INCONVENIENTS D'UNE MODELISATION DYNAMIQUE. D'AUTRE PART LE TYPE DE SUIVI DE TRAJECTOIRE A REALISER EST EXPLICITE ET LES COMMANDES PERMETTANT DE SUIVRE CES TRAJECTOIRES Y SONT EGALEMENT EXPOSEES. L'ELABORATION DU MODELE DYNAMIQUE DU ROBOT MOBILE ROMAIN (ROBOT MOBILE AUTONOME INSTRUMENTE) EST PRESENTEE EN EXPRIMANT LE CHOIX DU FORMALISME RETENU. L'ETUDE PORTE SUR DEUX LOIS DE COMMANDES DYNAMIQUES POUR CE VEHICULE. LA PREMIERE CONSISTE EN UNE COMMANDE PAR RETOUR D'ETAT LINEARISANT, LA SECONDE EN UNE COMMANDE PAR MODE GLISSANT. CES DEUX LOIS DE COMMANDES FONT L'OBJET DE SIMULATIONS SUR DES TRAJECTOIRES SIGNIFICATIVES. LES RESULTATS OBTENUS SONT DONNES ET ANALYSES. LA ROBUSTESSE DE CES LOIS DEVANT L'IMPRECISION DU MODELE EST PRESENTEE. APRES AVOIR DECRIT LES DIFFERENTES PHASES DE CONCEPTION DU ROBOT MOBILE ROMAIN, LES ASPECTS MECANIQUE, ELECTRONIQUE ET INFORMATIQUE SONT ABORDES EN TRAITANT NOTAMMENT DES DIFFERENTES TOPOLOGIES INFORMATIQUES MATERIELLES. LES CARACTERISTIQUES PRINCIPALES DE CE ROBOT SONT : UNE VITESSE DE 3 M/S, UNE DIRECTION ACTIVE, UNE ARCHITECTURE INFORMATIQUE OUVERTE BASEE SUR LE BUS CAN (CONTROL AREA NETWORK), UN SYSTEME TEMPS REEL OS9000. PLUSIEURS EXPERIMENTATIONS SONT EFFECTUEES AFIN DE VALIDER LES ETUDES THEORIQUES ELABOREES PRECEDEMMENT ET CONFIRMER LE BIEN FONDE DE LA CONCEPTION. LES TRAJECTOIRES DEJA SIMULEES SONT REPRISES ET PERMETTENT D'ENTERINER PRATIQUEMENT LES LOIS DE COMMANDES DYNAMIQUES. DES CONCLUSIONS ET DES SUITES A CE TRAVAIL SONT ENVISAGEES A LA FIN DU MEMOIRE.

Etude de l'application de l'apprentissage à la commande de robots et machines de production

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ISBN 13 :
Total Pages : 146 pages
Book Rating : 4.:/5 (49 download)

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Book Synopsis Etude de l'application de l'apprentissage à la commande de robots et machines de production by : Joao sinohara da Silva Sousa

Download or read book Etude de l'application de l'apprentissage à la commande de robots et machines de production written by Joao sinohara da Silva Sousa and published by . This book was released on 1997 with total page 146 pages. Available in PDF, EPUB and Kindle. Book excerpt: LES METHODOLOGIES MODERNES, TELLES QUE L'INGENIERIE CONCOURANTE, LA CONCEPTION INTEGREE ET LA MECATRONIQUE, PERMETTENT DE CONCEVOIR DES SYSTEMES PLUS INTELLIGENTS POUR L'AMELIORATION DES PERFORMANCES DE LA PRODUCTION. CECI CONDUIT A LES DOTER D'UNE CARACTERISTIQUE ESSENTIELLE : LA CAPACITE D'AUTO-APPRENTISSAGE. IL DEVIENT AINSI POSSIBLE DE CONCEVOIR DES SYSTEMES COOPERATIFS ET EVOLUTIFS, DONT LE SAVOIR-FAIRE EST ACTUALISE ET ENRICHI A CHAQUE NOUVELLE TACHE, PENDANT LEUR CONCEPTION ET LEUR CYCLE DE VIE. CETTE THESE CONTRIBUE A L'ENRICHISSEMENT DE LA CAPACITE D'APPRENTISSAGE POUR L'AMELIORATION DE LA QUALITE DES TACHES REALISEES PAR LES ROBOTS ET MACHINES DE PRODUCTION. ELLE PROLONGE LES TECHNIQUES EXISTANTES DE L'APPRENTISSAGE PAR REPETITION, POUR DONNER AU SYSTEME LA CAPACITE DE CONSTRUIRE ET D'UTILISER UNE BASE DE CONNAISSANCE SUR SON PROPRE COMPORTEMENT. ELLE SE DISTINGUE PRINCIPALEMENT PAR UNE VISION GLOBALE DE L'INTEGRATION DES TECHNIQUES DE COMMANDE CONVENTIONNELLES ET DES DIFFERENTS NIVEAUX D'APPRENTISSAGE POUR L'IMPLANTATION DE MACHINES INTELLIGENTES. AINSI, L'APPRENTISSAGE PAR REPETITION, PAR ANALOGIE, PAR DECOUVERTE ET PAR RESEAU DE NEURONES S'ASSOCIENT ET SE SUPERPOSENT EN PARALLELE AVEC LA BOUCLE DE COMMANDE CLASSIQUE. L'APPRENTISSAGE PAR REPETITION EST L'ELEMENT FONDAMENTAL POUR L'ACQUISITION ET L'ENRICHISSEMENT DU SAVOIR-FAIRE. CE SAVOIR-FAIRE EST EXPLOITE PAR ANALOGIE, PAR DECOUVERTE OU PAR RECONNAISSANCE POUR LA SYNTHESE DE L'ACTION D'APPRENTISSAGE A PARTIR DES EXPERIENCES DU PASSE ET EN PROFITANT DES DONNEES DE PRODUCTION. DE PLUS, LE SYSTEME EST CAPABLE DE STRUCTURER, MEMORISER ET GENERALISER LES INFORMATIONS ISSUES DE L'APPRENTISSAGE POUR CONSTITUER SA BASE DE CONNAISSANCES. ENFIN, UNE PLATE-FORME INTEGREE DE DEVELOPPEMENT DE LA COMMANDE INTELLIGENTE A ETE REALISEE. ELLE ACCOMPAGNE LA DEMARCHE DE CONCEPTION ET APPORTE LA CAPACITE D'ECHANGER DES INFORMATIONS AVEC DES EXPERTS POUR CONSTITUER LA BASE DE CONNAISSANCES INITIALE.

Informatique '92

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ISBN 13 :
Total Pages : 780 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Informatique '92 by :

Download or read book Informatique '92 written by and published by . This book was released on 1992 with total page 780 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Automatic Solar Tracking Sun Tracking Satellite Tracking rastreador solar seguimento solar seguidor solar automático de seguimiento solar

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Publisher : Gerro Prinsloo
ISBN 13 : 0620615761
Total Pages : 542 pages
Book Rating : 4.6/5 (26 download)

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Book Synopsis Automatic Solar Tracking Sun Tracking Satellite Tracking rastreador solar seguimento solar seguidor solar automático de seguimiento solar by : Gerro Prinsloo

Download or read book Automatic Solar Tracking Sun Tracking Satellite Tracking rastreador solar seguimento solar seguidor solar automático de seguimiento solar written by Gerro Prinsloo and published by Gerro Prinsloo. This book was released on 2015-11-01 with total page 542 pages. Available in PDF, EPUB and Kindle. Book excerpt: Automatic Solar Tracking Sun Tracking : This book details Automatic Solar-Tracking, Sun-Tracking-Systems, Solar-Trackers and Sun Tracker Systems. An intelligent automatic solar tracker is a device that orients a payload toward the sun. Such programmable computer based solar tracking device includes principles of solar tracking, solar tracking systems, as well as microcontroller, microprocessor and/or PC based solar tracking control to orientate solar reflectors, solar lenses, photovoltaic panels or other optical configurations towards the sun. Motorized space frames and kinematic systems ensure motion dynamics and employ drive technology and gearing principles to steer optical configurations such as mangin, parabolic, conic, or cassegrain solar energy collectors to face the sun and follow the sun movement contour continuously (seguimiento solar y automatización, automatización seguidor solar, tracking solar e automação, automação seguidor solar, inseguimento solare, inseguitore solare, energia termica, sole seguito, posizionatore motorizzato) In harnessing power from the sun through a solar tracker or practical solar tracking system, renewable energy control automation systems require automatic solar tracking software and solar position algorithms to accomplish dynamic motion control with control automation architecture, circuit boards and hardware. On-axis sun tracking system such as the altitude-azimuth dual axis or multi-axis solar tracker systems use a sun tracking algorithm or ray tracing sensors or software to ensure the sun's passage through the sky is traced with high precision in automated solar tracker applications, right through summer solstice, solar equinox and winter solstice. A high precision sun position calculator or sun position algorithm is this an important step in the design and construction of an automatic solar tracking system. The content of the book is also applicable to communication antenna satellite tracking and moon tracking algorithm source code for which links to free download links are provided. From sun tracing software perspective, the sonnet Tracing The Sun has a literal meaning. Within the context of sun track and trace, this book explains that the sun's daily path across the sky is directed by relatively simple principles, and if grasped/understood, then it is relatively easy to trace the sun with sun following software. Sun position computer software for tracing the sun are available as open source code, sources that is listed in this book. The book also describes the use of satellite tracking software and mechanisms in solar tracking applications. Ironically there was even a system called sun chaser, said to have been a solar positioner system known for chasing the sun throughout the day. Using solar equations in an electronic circuit for automatic solar tracking is quite simple, even if you are a novice, but mathematical solar equations are over complicated by academic experts and professors in text-books, journal articles and internet websites. In terms of solar hobbies, scholars, students and Hobbyist's looking at solar tracking electronics or PC programs for solar tracking are usually overcome by the sheer volume of scientific material and internet resources, which leaves many developers in frustration when search for simple experimental solar tracking source-code for their on-axis sun-tracking systems. This booklet will simplify the search for the mystical sun tracking formulas for your sun tracker innovation and help you develop your own autonomous solar tracking controller. By directing the solar collector directly into the sun, a solar harvesting means or device can harness sunlight or thermal heat. This is achieved with the help of sun angle formulas, solar angle formulas or solar tracking procedures for the calculation of sun's position in the sky. Automatic sun tracking system software includes algorithms for solar altitude azimuth angle calculations required in following the sun across the sky. In using the longitude, latitude GPS coordinates of the solar tracker location, these sun tracking software tools supports precision solar tracking by determining the solar altitude-azimuth coordinates for the sun trajectory in altitude-azimuth tracking at the tracker location, using certain sun angle formulas in sun vector calculations. Instead of follow the sun software, a sun tracking sensor such as a sun sensor or webcam or video camera with vision based sun following image processing software can also be used to determine the position of the sun optically. Such optical feedback devices are often used in solar panel tracking systems and dish tracking systems. Dynamic sun tracing is also used in solar surveying, DNI analyser and sun surveying systems that build solar infographics maps with solar radiance, irradiance and DNI models for GIS (geographical information system). In this way geospatial methods on solar/environment interaction makes use use of geospatial technologies (GIS, Remote Sensing, and Cartography). Climatic data and weather station or weather center data, as well as queries from sky servers and solar resource database systems (i.e. on DB2, Sybase, Oracle, SQL, MySQL) may also be associated with solar GIS maps. In such solar resource modelling systems, a pyranometer or solarimeter is normally used in addition to measure direct and indirect, scattered, dispersed, reflective radiation for a particular geographical location. Sunlight analysis is important in flash photography where photographic lighting are important for photographers. GIS systems are used by architects who add sun shadow applets to study architectural shading or sun shadow analysis, solar flux calculations, optical modelling or to perform weather modelling. Such systems often employ a computer operated telescope type mechanism with ray tracing program software as a solar navigator or sun tracer that determines the solar position and intensity. The purpose of this booklet is to assist developers to track and trace suitable source-code and solar tracking algorithms for their application, whether a hobbyist, scientist, technician or engineer. Many open-source sun following and tracking algorithms and source-code for solar tracking programs and modules are freely available to download on the internet today. Certain proprietary solar tracker kits and solar tracking controllers include a software development kit SDK for its application programming interface API attributes (Pebble). Widget libraries, widget toolkits, GUI toolkit and UX libraries with graphical control elements are also available to construct the graphical user interface (GUI) for your solar tracking or solar power monitoring program. The solar library used by solar position calculators, solar simulation software and solar contour calculators include machine program code for the solar hardware controller which are software programmed into Micro-controllers, Programmable Logic Controllers PLC, programmable gate arrays, Arduino processor or PIC processor. PC based solar tracking is also high in demand using C++, Visual Basic VB, as well as MS Windows, Linux and Apple Mac based operating systems for sun path tables on Matlab, Excel. Some books and internet webpages use other terms, such as: sun angle calculator, sun position calculator or solar angle calculator. As said, such software code calculate the solar azimuth angle, solar altitude angle, solar elevation angle or the solar Zenith angle (Zenith solar angle is simply referenced from vertical plane, the mirror of the elevation angle measured from the horizontal or ground plane level). Similar software code is also used in solar calculator apps or the solar power calculator apps for IOS and Android smartphone devices. Most of these smartphone solar mobile apps show the sun path and sun-angles for any location and date over a 24 hour period. Some smartphones include augmented reality features in which you can physically see and look at the solar path through your cell phone camera or mobile phone camera at your phone's specific GPS location. In the computer programming and digital signal processing (DSP) environment, (free/open source) program code are available for VB, .Net, Delphi, Python, C, C+, C++, PHP, Swift, ADM, F, Flash, Basic, QBasic, GBasic, KBasic, SIMPL language, Squirrel, Solaris, Assembly language on operating systems such as MS Windows, Apple Mac, DOS or Linux OS. Software algorithms predicting position of the sun in the sky are commonly available as graphical programming platforms such as Matlab (Mathworks), Simulink models, Java applets, TRNSYS simulations, Scada system apps, Labview module, Beckhoff TwinCAT (Visual Studio), Siemens SPA, mobile and iphone apps, Android or iOS tablet apps, and so forth. At the same time, PLC software code for a range of sun tracking automation technology can follow the profile of sun in sky for Siemens, HP, Panasonic, ABB, Allan Bradley, OMRON, SEW, Festo, Beckhoff, Rockwell, Schneider, Endress Hauser, Fudji electric. Honeywell, Fuchs, Yokonawa, or Muthibishi platforms. Sun path projection software are also available for a range of modular IPC embedded PC motherboards, Industrial PC, PLC (Programmable Logic Controller) and PAC (Programmable Automation Controller) such as the Siemens S7-1200 or Siemens Logo, Beckhoff IPC or CX series, OMRON PLC, Ercam PLC, AC500plc ABB, National Instruments NI PXI or NI cRIO, PIC processor, Intel 8051/8085, IBM (Cell, Power, Brain or Truenorth series), FPGA (Xilinx Altera Nios), Intel, Xeon, Atmel megaAVR, MPU, Maple, Teensy, MSP, XMOS, Xbee, ARM, Raspberry Pi, Eagle, Arduino or Arduino AtMega microcontroller, with servo motor, stepper motor, direct current DC pulse width modulation PWM (current driver) or alternating current AC SPS or IPC variable frequency drives VFD motor drives (also termed adjustable-frequency drive, variable-speed drive, AC drive, micro drive or inverter drive) for electrical, mechatronic, pneumatic, or hydraulic solar tracking actuators. The above motion control and robot control systems include analogue or digital interfacing ports on the processors to allow for tracker angle orientation feedback control through one or a combination of angle sensor or angle encoder, shaft encoder, precision encoder, optical encoder, magnetic encoder, direction encoder, rotational encoder, chip encoder, tilt sensor, inclination sensor, or pitch sensor. Note that the tracker's elevation or zenith axis angle may measured using an altitude angle-, declination angle-, inclination angle-, pitch angle-, or vertical angle-, zenith angle- sensor or inclinometer. Similarly the tracker's azimuth axis angle be measured with a azimuth angle-, horizontal angle-, or roll angle- sensor. Chip integrated accelerometer magnetometer gyroscope type angle sensors can also be used to calculate displacement. Other options include the use of thermal imaging systems such as a Fluke thermal imager, or robotic or vision based solar tracker systems that employ face tracking, head tracking, hand tracking, eye tracking and car tracking principles in solar tracking. With unattended decentralised rural, island, isolated, or autonomous off-grid power installations, remote control, monitoring, data acquisition, digital datalogging and online measurement and verification equipment becomes crucial. It assists the operator with supervisory control to monitor the efficiency of remote renewable energy resources and systems and provide valuable web-based feedback in terms of CO2 and clean development mechanism (CDM) reporting. A power quality analyser for diagnostics through internet, WiFi and cellular mobile links is most valuable in frontline troubleshooting and predictive maintenance, where quick diagnostic analysis is required to detect and prevent power quality issues. Solar tracker applications cover a wide spectrum of solar applications and solar assisted application, including concentrated solar power generation, solar desalination, solar water purification, solar steam generation, solar electricity generation, solar industrial process heat, solar thermal heat storage, solar food dryers, solar water pumping, hydrogen production from methane or producing hydrogen and oxygen from water (HHO) through electrolysis. Many patented or non-patented solar apparatus include tracking in solar apparatus for solar electric generator, solar desalinator, solar steam engine, solar ice maker, solar water purifier, solar cooling, solar refrigeration, USB solar charger, solar phone charging, portable solar charging tracker, solar coffee brewing, solar cooking or solar dying means. Your project may be the next breakthrough or patent, but your invention is held back by frustration in search for the sun tracker you require for your solar powered appliance, solar generator, solar tracker robot, solar freezer, solar cooker, solar drier, solar pump, solar freezer, or solar dryer project. Whether your solar electronic circuit diagram include a simplified solar controller design in a solar electricity project, solar power kit, solar hobby kit, solar steam generator, solar hot water system, solar ice maker, solar desalinator, hobbyist solar panels, hobby robot, or if you are developing professional or hobby electronics for a solar utility or micro scale solar powerplant for your own solar farm or solar farming, this publication may help accelerate the development of your solar tracking innovation. Lately, solar polygeneration, solar trigeneration (solar triple generation), and solar quad generation (adding delivery of steam, liquid/gaseous fuel, or capture food-grade CO$_2$) systems have need for automatic solar tracking. These systems are known for significant efficiency increases in energy yield as a result of the integration and re-use of waste or residual heat and are suitable for compact packaged micro solar powerplants that could be manufactured and transported in kit-form and operate on a plug-and play basis. Typical hybrid solar power systems include compact or packaged solar micro combined heat and power (CHP or mCHP) or solar micro combined, cooling, heating and power (CCHP, CHPC, mCCHP, or mCHPC) systems used in distributed power generation. These systems are often combined in concentrated solar CSP and CPV smart microgrid configurations for off-grid rural, island or isolated microgrid, minigrid and distributed power renewable energy systems. Solar tracking algorithms are also used in modelling of trigeneration systems using Matlab Simulink (Modelica or TRNSYS) platform as well as in automation and control of renewable energy systems through intelligent parsing, multi-objective, adaptive learning control and control optimization strategies. Solar tracking algorithms also find application in developing solar models for country or location specific solar studies, for example in terms of measuring or analysis of the fluctuations of the solar radiation (i.e. direct and diffuse radiation) in a particular area. Solar DNI, solar irradiance and atmospheric information and models can thus be integrated into a solar map, solar atlas or geographical information systems (GIS). Such models allows for defining local parameters for specific regions that may be valuable in terms of the evaluation of different solar in photovoltaic of CSP systems on simulation and synthesis platforms such as Matlab and Simulink or in linear or multi-objective optimization algorithm platforms such as COMPOSE, EnergyPLAN or DER-CAM. A dual-axis solar tracker and single-axis solar tracker may use a sun tracker program or sun tracker algorithm to position a solar dish, solar panel array, heliostat array, PV panel, solar antenna or infrared solar nantenna. A self-tracking solar concentrator performs automatic solar tracking by computing the solar vector. Solar position algorithms (TwinCAT, SPA, or PSA Algorithms) use an astronomical algorithm to calculate the position of the sun. It uses astronomical software algorithms and equations for solar tracking in the calculation of sun's position in the sky for each location on the earth at any time of day. Like an optical solar telescope, the solar position algorithm pin-points the solar reflector at the sun and locks onto the sun's position to track the sun across the sky as the sun progresses throughout the day. Optical sensors such as photodiodes, light-dependant-resistors (LDR) or photoresistors are used as optical accuracy feedback devices. Lately we also included a section in the book (with links to microprocessor code) on how the PixArt Wii infrared camera in the Wii remote or Wiimote may be used in infrared solar tracking applications. In order to harvest free energy from the sun, some automatic solar positioning systems use an optical means to direct the solar tracking device. These solar tracking strategies use optical tracking techniques, such as a sun sensor means, to direct sun rays onto a silicon or CMOS substrate to determine the X and Y coordinates of the sun's position. In a solar mems sun-sensor device, incident sunlight enters the sun sensor through a small pin-hole in a mask plate where light is exposed to a silicon substrate. In a web-camera or camera image processing sun tracking and sun following means, object tracking software performs multi object tracking or moving object tracking methods. In an solar object tracking technique, image processing software performs mathematical processing to box the outline of the apparent solar disc or sun blob within the captured image frame, while sun-localization is performed with an edge detection algorithm to determine the solar vector coordinates. An automated positioning system help maximize the yields of solar power plants through solar tracking control to harness sun's energy. In such renewable energy systems, the solar panel positioning system uses a sun tracking techniques and a solar angle calculator in positioning PV panels in photovoltaic systems and concentrated photovoltaic CPV systems. Automatic on-axis solar tracking in a PV solar tracking system can be dual-axis sun tracking or single-axis sun solar tracking. It is known that a motorized positioning system in a photovoltaic panel tracker increase energy yield and ensures increased power output, even in a single axis solar tracking configuration. Other applications such as robotic solar tracker or robotic solar tracking system uses robotica with artificial intelligence in the control optimization of energy yield in solar harvesting through a robotic tracking system. Automatic positioning systems in solar tracking designs are also used in other free energy generators, such as concentrated solar thermal power CSP and dish Stirling systems. The sun tracking device in a solar collector in a solar concentrator or solar collector Such a performs on-axis solar tracking, a dual axis solar tracker assists to harness energy from the sun through an optical solar collector, which can be a parabolic mirror, parabolic reflector, Fresnel lens or mirror array/matrix. A parabolic dish or reflector is dynamically steered using a transmission system or solar tracking slew drive mean. In steering the dish to face the sun, the power dish actuator and actuation means in a parabolic dish system optically focusses the sun's energy on the focal point of a parabolic dish or solar concentrating means. A Stirling engine, solar heat pipe, thermosyphin, solar phase change material PCM receiver, or a fibre optic sunlight receiver means is located at the focal point of the solar concentrator. The dish Stirling engine configuration is referred to as a dish Stirling system or Stirling power generation system. Hybrid solar power systems (used in combination with biogas, biofuel, petrol, ethanol, diesel, natural gas or PNG) use a combination of power sources to harness and store solar energy in a storage medium. Any multitude of energy sources can be combined through the use of controllers and the energy stored in batteries, phase change material, thermal heat storage, and in cogeneration form converted to the required power using thermodynamic cycles (organic Rankin, Brayton cycle, micro turbine, Stirling) with an inverter and charge controller.

Practical Solar Tracking Automatic Solar Tracking Sun Tracking Автоматическое удержание Солнечная слежения ВС 太陽能自動跟踪太陽跟踪

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Publisher : Gerro Prinsloo
ISBN 13 :
Total Pages : 542 pages
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Book Synopsis Practical Solar Tracking Automatic Solar Tracking Sun Tracking Автоматическое удержание Солнечная слежения ВС 太陽能自動跟踪太陽跟踪 by : Gerro Prinsloo

Download or read book Practical Solar Tracking Automatic Solar Tracking Sun Tracking Автоматическое удержание Солнечная слежения ВС 太陽能自動跟踪太陽跟踪 written by Gerro Prinsloo and published by Gerro Prinsloo. This book was released on 2015-11-01 with total page 542 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book details Practical Solar Energy Harvesting, Automatic Solar-Tracking, Sun-Tracking-Systems, Solar-Trackers and Sun Tracker Systems using motorized automatic positioning concepts and control principles. An intelligent automatic solar tracker is a device that orients a payload toward the sun. Such programmable computer based solar tracking device includes principles of solar tracking, solar tracking systems, as well as microcontroller, microprocessor and/or PC based solar tracking control to orientate solar reflectors, solar lenses, photovoltaic panels or other optical configurations towards the sun. Motorized space frames and kinematic systems ensure motion dynamics and employ drive technology and gearing principles to steer optical configurations such as mangin, parabolic, conic, or cassegrain solar energy collectors to face the sun and follow the sun movement contour continuously. In general, the book may benefit solar research and solar energy applications in countries such as Africa, Mediterranean, Italy, Spain, Greece, USA, Mexico, South America, Brazilia, Argentina, Chili, India, Malaysia, Middle East, UAE, Russia, Japan and China. This book on practical automatic Solar-Tracking Sun-Tracking is in .PDF format and can easily be converted to the .EPUB .MOBI .AZW .ePub .FB2 .LIT .LRF .MOBI .PDB .PDF .TCR formats for smartphones and Kindle by using the ebook.online-convert.com facility. The content of the book is also applicable to communication antenna satellite tracking and moon tracking algorithm source code for which links to free download links are provided. In harnessing power from the sun through a solar tracker or practical solar tracking system, renewable energy control automation systems require automatic solar tracking software and solar position algorithms to accomplish dynamic motion control with control automation architecture, circuit boards and hardware. On-axis sun tracking system such as the altitude-azimuth dual axis or multi-axis solar tracker systems use a sun tracking algorithm or ray tracing sensors or software to ensure the sun's passage through the sky is traced with high precision in automated solar tracker applications, right through summer solstice, solar equinox and winter solstice. A high precision sun position calculator or sun position algorithm is this an important step in the design and construction of an automatic solar tracking system. From sun tracing software perspective, the sonnet Tracing The Sun has a literal meaning. Within the context of sun track and trace, this book explains that the sun's daily path across the sky is directed by relatively simple principles, and if grasped/understood, then it is relatively easy to trace the sun with sun following software. Sun position computer software for tracing the sun are available as open source code, sources that is listed in this book. Ironically there was even a system called sun chaser, said to have been a solar positioner system known for chasing the sun throughout the day. Using solar equations in an electronic circuit for automatic solar tracking is quite simple, even if you are a novice, but mathematical solar equations are over complicated by academic experts and professors in text-books, journal articles and internet websites. In terms of solar hobbies, scholars, students and Hobbyist's looking at solar tracking electronics or PC programs for solar tracking are usually overcome by the sheer volume of scientific material and internet resources, which leaves many developers in frustration when search for simple experimental solar tracking source-code for their on-axis sun-tracking systems. This booklet will simplify the search for the mystical sun tracking formulas for your sun tracker innovation and help you develop your own autonomous solar tracking controller. By directing the solar collector directly into the sun, a solar harvesting means or device can harness sunlight or thermal heat. This is achieved with the help of sun angle formulas, solar angle formulas or solar tracking procedures for the calculation of sun's position in the sky. Automatic sun tracking system software includes algorithms for solar altitude azimuth angle calculations required in following the sun across the sky. In using the longitude, latitude GPS coordinates of the solar tracker location, these sun tracking software tools supports precision solar tracking by determining the solar altitude-azimuth coordinates for the sun trajectory in altitude-azimuth tracking at the tracker location, using certain sun angle formulas in sun vector calculations. Instead of follow the sun software, a sun tracking sensor such as a sun sensor or webcam or video camera with vision based sun following image processing software can also be used to determine the position of the sun optically. Such optical feedback devices are often used in solar panel tracking systems and dish tracking systems. Dynamic sun tracing is also used in solar surveying, DNI analyser and sun surveying systems that build solar infographics maps with solar radiance, irradiance and DNI models for GIS (geographical information system). In this way geospatial methods on solar/environment interaction makes use use of geospatial technologies (GIS, Remote Sensing, and Cartography). Climatic data and weather station or weather center data, as well as queries from sky servers and solar resource database systems (i.e. on DB2, Sybase, Oracle, SQL, MySQL) may also be associated with solar GIS maps. In such solar resource modelling systems, a pyranometer or solarimeter is normally used in addition to measure direct and indirect, scattered, dispersed, reflective radiation for a particular geographical location. Sunlight analysis is important in flash photography where photographic lighting are important for photographers. GIS systems are used by architects who add sun shadow applets to study architectural shading or sun shadow analysis, solar flux calculations, optical modelling or to perform weather modelling. Such systems often employ a computer operated telescope type mechanism with ray tracing program software as a solar navigator or sun tracer that determines the solar position and intensity. The purpose of this booklet is to assist developers to track and trace suitable source-code and solar tracking algorithms for their application, whether a hobbyist, scientist, technician or engineer. Many open-source sun following and tracking algorithms and source-code for solar tracking programs and modules are freely available to download on the internet today. Certain proprietary solar tracker kits and solar tracking controllers include a software development kit SDK for its application programming interface API attributes (Pebble). Widget libraries, widget toolkits, GUI toolkit and UX libraries with graphical control elements are also available to construct the graphical user interface (GUI) for your solar tracking or solar power monitoring program. The solar library used by solar position calculators, solar simulation software and solar contour calculators include machine program code for the solar hardware controller which are software programmed into Micro-controllers, Programmable Logic Controllers PLC, programmable gate arrays, Arduino processor or PIC processor. PC based solar tracking is also high in demand using C++, Visual Basic VB, as well as MS Windows, Linux and Apple Mac based operating systems for sun path tables on Matlab, Excel. Some books and internet webpages use other terms, such as: sun angle calculator, sun position calculator or solar angle calculator. As said, such software code calculate the solar azimuth angle, solar altitude angle, solar elevation angle or the solar Zenith angle (Zenith solar angle is simply referenced from vertical plane, the mirror of the elevation angle measured from the horizontal or ground plane level). Similar software code is also used in solar calculator apps or the solar power calculator apps for IOS and Android smartphone devices. Most of these smartphone solar mobile apps show the sun path and sun-angles for any location and date over a 24 hour period. Some smartphones include augmented reality features in which you can physically see and look at the solar path through your cell phone camera or mobile phone camera at your phone's specific GPS location. In the computer programming and digital signal processing (DSP) environment, (free/open source) program code are available for VB, .Net, Delphi, Python, C, C+, C++, PHP, Swift, ADM, F, Flash, Basic, QBasic, GBasic, KBasic, SIMPL language, Squirrel, Solaris, Assembly language on operating systems such as MS Windows, Apple Mac, DOS or Linux OS. Software algorithms predicting position of the sun in the sky are commonly available as graphical programming platforms such as Matlab (Mathworks), Simulink models, Java applets, TRNSYS simulations, Scada system apps, Labview module, Beckhoff TwinCAT (Visual Studio), Siemens SPA, mobile and iphone apps, Android or iOS tablet apps, and so forth. At the same time, PLC software code for a range of sun tracking automation technology can follow the profile of sun in sky for Siemens, HP, Panasonic, ABB, Allan Bradley, OMRON, SEW, Festo, Beckhoff, Rockwell, Schneider, Endress Hauser, Fudji electric. Honeywell, Fuchs, Yokonawa, or Muthibishi platforms. Sun path projection software are also available for a range of modular IPC embedded PC motherboards, Industrial PC, PLC (Programmable Logic Controller) and PAC (Programmable Automation Controller) such as the Siemens S7-1200 or Siemens Logo, Beckhoff IPC or CX series, OMRON PLC, Ercam PLC, AC500plc ABB, National Instruments NI PXI or NI cRIO, PIC processor, Intel 8051/8085, IBM (Cell, Power, Brain or Truenorth series), FPGA (Xilinx Altera Nios), Intel, Xeon, Atmel megaAVR, MPU, Maple, Teensy, MSP, XMOS, Xbee, ARM, Raspberry Pi, Eagle, Arduino or Arduino AtMega microcontroller, with servo motor, stepper motor, direct current DC pulse width modulation PWM (current driver) or alternating current AC SPS or IPC variable frequency drives VFD motor drives (also termed adjustable-frequency drive, variable-speed drive, AC drive, micro drive or inverter drive) for electrical, mechatronic, pneumatic, or hydraulic solar tracking actuators. The above motion control and robot control systems include analogue or digital interfacing ports on the processors to allow for tracker angle orientation feedback control through one or a combination of angle sensor or angle encoder, shaft encoder, precision encoder, optical encoder, magnetic encoder, direction encoder, rotational encoder, chip encoder, tilt sensor, inclination sensor, or pitch sensor. Note that the tracker's elevation or zenith axis angle may measured using an altitude angle-, declination angle-, inclination angle-, pitch angle-, or vertical angle-, zenith angle- sensor or inclinometer. Similarly the tracker's azimuth axis angle be measured with a azimuth angle-, horizontal angle-, or roll angle- sensor. Chip integrated accelerometer magnetometer gyroscope type angle sensors can also be used to calculate displacement. Other options include the use of thermal imaging systems such as a Fluke thermal imager, or robotic or vision based solar tracker systems that employ face tracking, head tracking, hand tracking, eye tracking and car tracking principles in solar tracking. With unattended decentralised rural, island, isolated, or autonomous off-grid power installations, remote control, monitoring, data acquisition, digital datalogging and online measurement and verification equipment becomes crucial. It assists the operator with supervisory control to monitor the efficiency of remote renewable energy resources and systems and provide valuable web-based feedback in terms of CO2 and clean development mechanism (CDM) reporting. A power quality analyser for diagnostics through internet, WiFi and cellular mobile links is most valuable in frontline troubleshooting and predictive maintenance, where quick diagnostic analysis is required to detect and prevent power quality issues. Solar tracker applications cover a wide spectrum of solar applications and solar assisted application, including concentrated solar power generation, solar desalination, solar water purification, solar steam generation, solar electricity generation, solar industrial process heat, solar thermal heat storage, solar food dryers, solar water pumping, hydrogen production from methane or producing hydrogen and oxygen from water (HHO) through electrolysis. Many patented or non-patented solar apparatus include tracking in solar apparatus for solar electric generator, solar desalinator, solar steam engine, solar ice maker, solar water purifier, solar cooling, solar refrigeration, USB solar charger, solar phone charging, portable solar charging tracker, solar coffee brewing, solar cooking or solar dying means. Your project may be the next breakthrough or patent, but your invention is held back by frustration in search for the sun tracker you require for your solar powered appliance, solar generator, solar tracker robot, solar freezer, solar cooker, solar drier, solar pump, solar freezer, or solar dryer project. Whether your solar electronic circuit diagram include a simplified solar controller design in a solar electricity project, solar power kit, solar hobby kit, solar steam generator, solar hot water system, solar ice maker, solar desalinator, hobbyist solar panels, hobby robot, or if you are developing professional or hobby electronics for a solar utility or micro scale solar powerplant for your own solar farm or solar farming, this publication may help accelerate the development of your solar tracking innovation. Lately, solar polygeneration, solar trigeneration (solar triple generation), and solar quad generation (adding delivery of steam, liquid/gaseous fuel, or capture food-grade CO$_2$) systems have need for automatic solar tracking. These systems are known for significant efficiency increases in energy yield as a result of the integration and re-use of waste or residual heat and are suitable for compact packaged micro solar powerplants that could be manufactured and transported in kit-form and operate on a plug-and play basis. Typical hybrid solar power systems include compact or packaged solar micro combined heat and power (CHP or mCHP) or solar micro combined, cooling, heating and power (CCHP, CHPC, mCCHP, or mCHPC) systems used in distributed power generation. These systems are often combined in concentrated solar CSP and CPV smart microgrid configurations for off-grid rural, island or isolated microgrid, minigrid and distributed power renewable energy systems. Solar tracking algorithms are also used in modelling of trigeneration systems using Matlab Simulink (Modelica or TRNSYS) platform as well as in automation and control of renewable energy systems through intelligent parsing, multi-objective, adaptive learning control and control optimization strategies. Solar tracking algorithms also find application in developing solar models for country or location specific solar studies, for example in terms of measuring or analysis of the fluctuations of the solar radiation (i.e. direct and diffuse radiation) in a particular area. Solar DNI, solar irradiance and atmospheric information and models can thus be integrated into a solar map, solar atlas or geographical information systems (GIS). Such models allows for defining local parameters for specific regions that may be valuable in terms of the evaluation of different solar in photovoltaic of CSP systems on simulation and synthesis platforms such as Matlab and Simulink or in linear or multi-objective optimization algorithm platforms such as COMPOSE, EnergyPLAN or DER-CAM. A dual-axis solar tracker and single-axis solar tracker may use a sun tracker program or sun tracker algorithm to position a solar dish, solar panel array, heliostat array, PV panel, solar antenna or infrared solar nantenna. A self-tracking solar concentrator performs automatic solar tracking by computing the solar vector. Solar position algorithms (TwinCAT, SPA, or PSA Algorithms) use an astronomical algorithm to calculate the position of the sun. It uses astronomical software algorithms and equations for solar tracking in the calculation of sun's position in the sky for each location on the earth at any time of day. Like an optical solar telescope, the solar position algorithm pin-points the solar reflector at the sun and locks onto the sun's position to track the sun across the sky as the sun progresses throughout the day. Optical sensors such as photodiodes, light-dependant-resistors (LDR) or photoresistors are used as optical accuracy feedback devices. Lately we also included a section in the book (with links to microprocessor code) on how the PixArt Wii infrared camera in the Wii remote or Wiimote may be used in infrared solar tracking applications. In order to harvest free energy from the sun, some automatic solar positioning systems use an optical means to direct the solar tracking device. These solar tracking strategies use optical tracking techniques, such as a sun sensor means, to direct sun rays onto a silicon or CMOS substrate to determine the X and Y coordinates of the sun's position. In a solar mems sun-sensor device, incident sunlight enters the sun sensor through a small pin-hole in a mask plate where light is exposed to a silicon substrate. In a web-camera or camera image processing sun tracking and sun following means, object tracking software performs multi object tracking or moving object tracking methods. In an solar object tracking technique, image processing software performs mathematical processing to box the outline of the apparent solar disc or sun blob within the captured image frame, while sun-localization is performed with an edge detection algorithm to determine the solar vector coordinates. An automated positioning system help maximize the yields of solar power plants through solar tracking control to harness sun's energy. In such renewable energy systems, the solar panel positioning system uses a sun tracking techniques and a solar angle calculator in positioning PV panels in photovoltaic systems and concentrated photovoltaic CPV systems. Automatic on-axis solar tracking in a PV solar tracking system can be dual-axis sun tracking or single-axis sun solar tracking. It is known that a motorized positioning system in a photovoltaic panel tracker increase energy yield and ensures increased power output, even in a single axis solar tracking configuration. Other applications such as robotic solar tracker or robotic solar tracking system uses robotica with artificial intelligence in the control optimization of energy yield in solar harvesting through a robotic tracking system. Automatic positioning systems in solar tracking designs are also used in other free energy generators, such as concentrated solar thermal power CSP and dish Stirling systems. The sun tracking device in a solar collector in a solar concentrator or solar collector Such a performs on-axis solar tracking, a dual axis solar tracker assists to harness energy from the sun through an optical solar collector, which can be a parabolic mirror, parabolic reflector, Fresnel lens or mirror array/matrix. A parabolic dish or reflector is dynamically steered using a transmission system or solar tracking slew drive mean. In steering the dish to face the sun, the power dish actuator and actuation means in a parabolic dish system optically focusses the sun's energy on the focal point of a parabolic dish or solar concentrating means. A Stirling engine, solar heat pipe, thermosyphin, solar phase change material PCM receiver, or a fibre optic sunlight receiver means is located at the focal point of the solar concentrator. The dish Stirling engine configuration is referred to as a dish Stirling system or Stirling power generation system. Hybrid solar power systems (used in combination with biogas, biofuel, petrol, ethanol, diesel, natural gas or PNG) use a combination of power sources to harness and store solar energy in a storage medium. Any multitude of energy sources can be combined through the use of controllers and the energy stored in batteries, phase change material, thermal heat storage, and in cogeneration form converted to the required power using thermodynamic cycles (organic Rankin, Brayton cycle, micro turbine, Stirling) with an inverter and charge controller. В этой книге подробно Автоматическая Solar-Tracking, ВС-Tracking-Systems, Solar-трекеры и ВС Tracker Systems. Интеллектуальный автоматический солнечной слежения является устройством, которое ориентирует полезную нагрузку к солнцу. Такое программируемый компьютер на основе солнечной устройство слежения включает принципы солнечной слежения, солнечных систем слежения, а также микроконтроллер, микропроцессор и / или ПК на базе управления солнечной отслеживания ориентироваться солнечных отражателей, солнечные линзы, фотоэлектрические панели или другие оптические конфигурации к ВС Моторизованные космические кадры и кинематические системы обеспечения динамики движения и использовать приводной техники и готовится принципы, чтобы направить оптические конфигурации, такие как Манжен, параболических, конических или Кассегрена солнечных коллекторов энергии, чтобы лицом к солнцу и следовать за солнцем контур движения непрерывно. В обуздывать силу от солнца через солнечный трекер или практической солнечной системы слежения, системы возобновляемых контроля энергии автоматизации требуют автоматического солнечной отслеживания программного обеспечения и алгоритмов солнечные позиции для достижения динамического контроля движения с архитектуры автоматизации управления, печатных плат и аппаратных средств. На оси системы слежения ВС, таких как высота-азимут двойной оси или многоосевые солнечные системы трекер использовать алгоритм отслеживания солнце или трассировки лучей датчиков или программное обеспечение, чтобы обеспечить прохождение солнца по небу прослеживается с высокой точностью в автоматизированных приложений Солнечная Tracker , прямо через летнего солнцестояния, солнечного равноденствия и зимнего солнцестояния.Высокая точность позиции ВС калькулятор или положение солнца алгоритм это важный шаг в проектировании и строительстве автоматической системой солнечной слежения. 這本書詳細介紹了全自動太陽能跟踪,太陽跟踪系統的出現,太陽能跟踪器和太陽跟踪系統。智能全自動太陽能跟踪器是定向向著太陽的有效載荷設備。這種可編程計算機的太陽能跟踪裝置,包括太陽跟踪,太陽能跟踪系統,以及微控制器,微處理器和/或基於PC機的太陽跟踪控制,以定向太陽能反射器,太陽透鏡,光電板或其他光學配置朝向太陽的原理。機動空間框架和運動系統,確保運動動力學和採用的驅動技術和傳動原理引導光學配置,如曼金,拋物線,圓錐曲線,或卡塞格林式太陽能集熱器面向太陽,不斷跟隨太陽運動的輪廓。 從陽光透過太陽能跟踪器或實用的太陽能跟踪系統利用電力,可再生能源控制的自動化系統需要自動太陽跟踪軟件和太陽位置算法來實現控制與自動化架構,電路板和硬件的動態運動控制。上軸太陽跟踪系統,如高度,方位角雙軸或多軸太陽跟踪系統使用太陽跟踪算法或光線追踪傳感器或軟件,以確保通過天空中太陽的通道被跟踪的高精度的自動太陽跟踪器的應用,通過正確的夏至,春分太陽和冬至。一種高精度太陽位置計算器或太陽位置算法是這樣的自動太陽能跟踪系統的設計和施工中的重要一步。

Sun Tracking and Solar Renewable Energy Harvesting

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Author :
Publisher : Gerro Prinsloo
ISBN 13 :
Total Pages : 542 pages
Book Rating : 4./5 ( download)

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Book Synopsis Sun Tracking and Solar Renewable Energy Harvesting by : Gerro Prinsloo

Download or read book Sun Tracking and Solar Renewable Energy Harvesting written by Gerro Prinsloo and published by Gerro Prinsloo. This book was released on 2015-11-02 with total page 542 pages. Available in PDF, EPUB and Kindle. Book excerpt: Free to download eBook on Practical Solar Tracking Design, Solar Tracking, Sun Tracking, Sun Tracker, Solar Tracker, Follow Sun, Sun Position calculation (Azimuth, Elevation, Zenith), Sun following, Sunrise, Sunset, Moon-phase, Moonrise, Moonset calculators. In harnessing power from the sun through a solar tracker or solar tracking system, renewable energy system developers require automatic solar tracking software and solar position algorithms. On-axis sun tracking system such as the altitude-azimuth dual axis or multi-axis solar tracker systems use a sun tracking algorithm or ray tracing sensors or software to ensure the sun's passage through the sky is traced with high precision in automated solar tracker applications, right through summer solstice, solar equinox and winter solstice. Eco Friendly and Environmentally Sustainable Micro Combined Solar Heat and Power (m-CHP, m-CCHP, m-CHCP) with Microgrid Storage and Layered Smartgrid Control towards Supplying Off-Grid Rural Villages in developing BRICS countries such as Africa, India, China and Brazil. Off-grid rural villages and isolated islands areas require mCHP and trigeneration solar power plants and associated isolated smart microgrid solutions to serve the community energy needs. This article describes the development progress for such a system, also referred to as solar polygeneration. The system includes a sun tracker mechanism wherin a parabolic dish or lenses are guided by a light sensitive mechanique in a way that the solar receiver is always at right angle to the solar radiation. Solar thermal energy is then either converted into electrical energy through a free piston Stirling, or stored in a thermal storage container. The project includes the thermodynamic modeling of the plant in Matlab Simulink as well as the development of an intelligent control approach that includes smart microgrid distribution and optimization. The book includes aspects in the simulation and optimization of stand-alone hybrid renewable energy systems and co-generation in isolated or islanded microgrids. It focusses on the stepwise development of a hybrid solar driven micro combined cooling heating and power (mCCHP) compact trigeneration polygeneration and thermal energy storage (TES) system with intelligent weather prediction, weak-ahead scheduling (time horizon), and look-ahead dispatch on integrated smart microgrid distribution principles. The solar harvesting and solar thermodynamic system includes an automatic sun tracking platform based on a PLC controlled mechatronic sun tracking system that follows the sun progressing across the sky. An intelligent energy management and adaptive learning control optimization approach is proposed for autonomous off-grid remote power applications, both for thermodynamic optimization and smart micro-grid optimization for distributed energy resources (DER). The correct resolution of this load-following multi objective optimization problem is a complex task because of the high number and multi-dimensional variables, the cross-correlation and interdependency between the energy streams as well as the non-linearity in the performance of some of the system components. Exergy-based control approaches for smartgrid topologies are considered in terms of the intelligence behind the safe and reliable operation of a microgrid in an automated system that can manage energy flow in electrical as well as thermal energy systems. The standalone micro-grid solution would be suitable for a rural village, intelligent building, district energy system, campus power, shopping mall centre, isolated network, eco estate or remote island application setting where self-generation and decentralized energy system concepts play a role. Discrete digital simulation models for the thermodynamic and active demand side management systems with digital smartgrid control unit to optimize the system energy management is currently under development. Parametric simulation models for this trigeneration system (polygeneration, poligeneration, quadgeneration) are developed on the Matlab Simulink and TrnSys platforms. In terms of model predictive coding strategies, the automation controller will perform multi-objective cost optimization for energy management on a microgrid level by managing the generation and storage of electrical, heat and cooling energies in layers. Each layer has its own set of smart microgrid priorities associated with user demand side cycle predictions. Mixed Integer Linear Programming and Neural network algorithms are being modeled to perform Multi Objective Control optimization as potential optimization and adaptive learning techniques.

Robot Learning

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 1461531845
Total Pages : 247 pages
Book Rating : 4.4/5 (615 download)

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Book Synopsis Robot Learning by : J. H. Connell

Download or read book Robot Learning written by J. H. Connell and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 247 pages. Available in PDF, EPUB and Kindle. Book excerpt: Building a robot that learns to perform a task has been acknowledged as one of the major challenges facing artificial intelligence. Self-improving robots would relieve humans from much of the drudgery of programming and would potentially allow operation in environments that were changeable or only partially known. Progress towards this goal would also make fundamental contributions to artificial intelligence by furthering our understanding of how to successfully integrate disparate abilities such as perception, planning, learning and action. Although its roots can be traced back to the late fifties, the area of robot learning has lately seen a resurgence of interest. The flurry of interest in robot learning has partly been fueled by exciting new work in the areas of reinforcement earning, behavior-based architectures, genetic algorithms, neural networks and the study of artificial life. Robot Learning gives an overview of some of the current research projects in robot learning being carried out at leading universities and research laboratories in the United States. The main research directions in robot learning covered in this book include: reinforcement learning, behavior-based architectures, neural networks, map learning, action models, navigation and guided exploration.

Your Mindful Compass

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Author :
Publisher :
ISBN 13 : 9780615928791
Total Pages : 318 pages
Book Rating : 4.9/5 (287 download)

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Book Synopsis Your Mindful Compass by : Andrea Maloney Schara

Download or read book Your Mindful Compass written by Andrea Maloney Schara and published by . This book was released on 2013-12-01 with total page 318 pages. Available in PDF, EPUB and Kindle. Book excerpt: "Your Mindful Compass" takes us behind the emotional curtain to see the mechanisms regulating individuals in social systems. There is great comfort and wisdom in knowing we can increase our awareness to manage the swift and ancient mechanisms of social control. We can gain greater flexibility by seeing how social controls work in systems from ants to humans. To be less controlled by others, we learn how emotional systems influence our relationship-oriented brain. People want to know what goes on in families that give rise to amazing leaders and/or terrorists. For the first time in history we can understand the systems in which we live. The social sciences have been accumulating knowledge since the early fifties as to how we are regulated by others. S. Milgram, S. Ashe, P. Zimbardo and J. Calhoun, detail the vulnerability to being duped and deceived and the difficulty of cooperating when values differ. Murray Bowen, M.D., the first researcher to observe several live-in families, for up to three years, at the National Institute of Mental Health. Describing how family members overly influence one another and distribute stress unevenly, Bowen described both how symptoms and family leaders emerge in highly stressed families. Our brain is not organized to automatically perceive that each family has an emotional system, fine-tuned by evolution and "valuing" its survival as a whole, as much as the survival of any individual. It is easier to see this emotional system function in ants or mice but not in humans. The emotional system is organized to snooker us humans: encouraging us to take sides, run away from others, to pressure others, to get sick, to blame others, and to have great difficulty in seeing our part in problems. It is hard to see that we become anxious, stressed out and even that we are difficult to deal with. But "thinking systems" can open the doors of perception, allowing us to experience the world in a different way. This book offers both coaching ideas and stories from leaders as to strategies to break out from social control by de-triangling, using paradoxes, reversals and other types of interruptions of highly linked emotional processes. Time is needed to think clearly about the automatic nature of the two against one triangle. Time and experience is required as we learn strategies to put two people together and get self outside the control of the system. In addition, it takes time to clarify and define one's principles, to know what "I" will or will not do and to be able to take a stand with others with whom we are very involved. The good news is that systems' thinking is possible for anyone. It is always possible for an individual to understand feelings and to integrate them with their more rational brains. In so doing, an individual increases his or her ability to communicate despite misunderstandings or even rejection from important others. The effort involved in creating your Mindful Compass enables us to perceive the relationship system without experiencing it's threats. The four points on the Mindful Compass are: 1) Action for Self, 2) Resistance to Forward Progress, 3) Knowledge of Social Systems and the 4) The Ability to Stand Alone. Each gives us a view of the process one enters when making an effort to define a self and build an emotional backbone. It is not easy to find our way through the social jungle. The ability to know emotional systems well enough to take a position for self and to become more differentiated is part of the natural way humans cope with pressure. Now people can use available knowledge to build an emotional backbone, by thoughtfully altering their part in the relationship system. No one knows how far one can go by making an effort to be more of a self-defined individual in relationships to others. Through increasing emotional maturity, we can find greater individual freedom at the same time that we increase our ability to cooperate and to be close to others.

Innovate Bristol

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Author :
Publisher :
ISBN 13 : 9781949677072
Total Pages : pages
Book Rating : 4.6/5 (77 download)

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Book Synopsis Innovate Bristol by : Sven Boermeester

Download or read book Innovate Bristol written by Sven Boermeester and published by . This book was released on 2019-12 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Innovate Bristol highlights and celebrates those companies and individuals that are actively working at building a better tomorrow for all. Innovation Ecosystems thrive through the involvement and support of companies and individuals from all industries, which is why the Innovate series not only focuses on the innovators but also those people whom the Innovation Ecosystem, would not be able to thrive without.