The Design and Implementation of a Stand-Alone Photovoltaic System with Data Logging and Remote Monitoring via the Internet. Phinikarides, A. Ph.D. Thesis, University of Cyprus, Nicosia, Cyprus, May, 2007. abstract bibtex The purpose of this project was the design and implementation of a stand-alone photovoltaic system used for powering a 40W conventional AC incandescent lamp for 4 hours during the night, with DC voltage and current measurements, from the photovoltaic panel, recorded and stored in a database. The measurements were made remotely available via a dynamic web site, able to display real-time data and construct graphs of voltage, current and power over time for a specified time interval. The major aspect of this project was the installation of the photovoltaic and data acquisition subsystems and subsequently, the real operation of the system. The installation took place at the University of Cyprus' Photovoltaic Park, using photovoltaic components and wires whose specifications have been calculated to comply with the project's specifications and the 16th edition of the IEE Wiring Regulations in the design part of this project. The actual operation of the system has been recorded and the design has been verified. This process was made easier by observing the measurements taken by the data acquisition system and comparing them with the theoretical values. In addition to the design and implementation of the project, this dissertation provides an insight on the status of the photovoltaic market in Cyprus.
@phdthesis{phinikaridesDesignImplementationStandalone2007,
type = {{{BSc}} Dissertation},
title = {The Design and Implementation of a Stand-Alone Photovoltaic System with Data Logging and Remote Monitoring via the Internet},
author = {Phinikarides, Alexander},
year = {2007},
month = may,
address = {{Nicosia, Cyprus}},
abstract = {The purpose of this project was the design and implementation of a stand-alone photovoltaic system used for powering a 40W conventional AC incandescent lamp for 4 hours during the night, with DC voltage and current measurements, from the photovoltaic panel, recorded and stored in a database. The measurements were made remotely available via a dynamic web site, able to display real-time data and construct graphs of voltage, current and power over time for a specified time interval. The major aspect of this project was the installation of the photovoltaic and data acquisition subsystems and subsequently, the real operation of the system. The installation took place at the University of Cyprus' Photovoltaic Park, using photovoltaic components and wires whose specifications have been calculated to comply with the project's specifications and the 16th edition of the IEE Wiring Regulations in the design part of this project. The actual operation of the system has been recorded and the design has been verified. This process was made easier by observing the measurements taken by the data acquisition system and comparing them with the theoretical values. In addition to the design and implementation of the project, this dissertation provides an insight on the status of the photovoltaic market in Cyprus.},
copyright = {All rights reserved},
langid = {english},
school = {University of Cyprus},
file = {/home/alexis/Zotero/storage/WLCGGDZE/Phinikarides - 2007 - The design and implementation of a stand-alone pho.pdf}
}
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