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Solar autonomous vehicle with enhanced charging mechanism based on regression algorithm for agricultural application

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WVSU-M-CICT-MTH-2018-SubongPM.OCR.pdf (234.3Kb)
Дата
2018-10
Автор
Subong, Paul Marlou C.
Thesis Adviser
Gerardo, Bobby D.
Committee Chair
De Castro, Joel T.
Committee Members
Concepcion, Ma. Beth S.
Elijorde, Frank I.
Sumido, Evan C.
Duran, Peter Rey
Metadata
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Аннотации
Factors like sunlight, current drawn and voltage were considered as triggers in the ability to efficiently charge storage batteries and in line with the type of charging algorithm to be used either Pulse Width Modulation (PWM) or Maximum Power Point Tracking (MPPT) techniques. Thus, these provide ways of choosing appropriate algorithm for optimized charging in a given state of charge of the batteries especially for solar vehicle where it is usually changing positions; thus affect charging capabilities. Solar controllers functions differently such as the MPPT and the PWM solar controllers, which current drawn from the PV cells to the voltage storage to the batteries. Research and tests were conducted which solar controller to be use in such conditions. The researcher used Regression Algorithm to determine which of the two would charge the batteries better and optimally operates the mechanism and prolongs the battery life in such weather conditions. This study brought and modified a full scale electric motorized vehicle. Aside from mechanized machineries, the system can also be incorporated to some other systems that uses solar power.
Contributes to SDGs
SDG 7 - Affordable and clean energy SDG 9 - Industry, innovation and infrastructure
URI
https://hdl.handle.net/20.500.14353/618
Recommended Citation
Subong, P. M. C. (2018). Solar autonomous vehicle with enhanced charging mechanism based on regression algorithm for agricultural application [Master’s thesis, West Visayas State University]. WVSU Institutional Repository and Electronic Dissertations and Theses PLUS.
Type
Thesis
Keywords
Maximum Power Point Tracking Agricultural Application Regression Algorithm Charging mechanism Energy availability Energy demands Pulse width modulation Agricultural application Charge controllers Energy storage applications Renewable technologies
Тематика
Solar energy OCLC - FAST (Faceted Application of Subject Terminology) Pulse-duration modulation OCLC - FAST (Faceted Application of Subject Terminology) Solar vehicles OCLC - FAST (Faceted Application of Subject Terminology) Automated vehicles OCLC - FAST (Faceted Application of Subject Terminology) Photovoltaic cells OCLC - FAST (Faceted Application of Subject Terminology) Organic photovoltaic cells OCLC - FAST (Faceted Application of Subject Terminology) Solar energy--Industrial applications OCLC - FAST (Faceted Application of Subject Terminology) Energy conservation--Industrial applications OCLC - FAST (Faceted Application of Subject Terminology) Machine learning OCLC - FAST (Faceted Application of Subject Terminology)
Degree Discipline
College of Information and Communications Technology
Degree Name
Master in Information Technology
Degree Level
Masters
Physical Description
x, 55 p. : ill. (col.).
Collections
  • 2. Master's Theses [129]

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