Performance Analysis Of Fixed c-Si PV Modules With The Optimum Tilt And Azimuth Angles For Electric Peak Load In Taiwan

碩士 === 國立高雄應用科技大學 === 應用工程科學研究所 === 101 === During the process about energy of Sun was transformed into electric power directly by the photovoltaic, it is fewer to pollute the environment and so be considered the main choices instead of fossil fuel for future. But the photovoltaic can not keep gener...

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Bibliographic Details
Main Authors: TienPao Fu, 傅添保
Other Authors: Herchang Ay
Format: Others
Language:zh-TW
Published: 102
Online Access:http://ndltd.ncl.edu.tw/handle/84213968219555240620
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Summary:碩士 === 國立高雄應用科技大學 === 應用工程科學研究所 === 101 === During the process about energy of Sun was transformed into electric power directly by the photovoltaic, it is fewer to pollute the environment and so be considered the main choices instead of fossil fuel for future. But the photovoltaic can not keep generating electric power stably and detain its development because it is easy to be effected by the weather. How to using the sunlight efficiently to promote the electric power of the photovoltaic when the hot weather cause power load gaining extremely is a worth researched direction. The research bases on the characteristic of Taiwan power load and using its recent-year system load data to conclude peak load time. It will decide tilt angle and azimuth angle when install its photovoltaic, this way will gain the maximum electric power to approve the ability of supplement of photovoltaic for the peak load to reducing the low-efficient reserve margin. Dedicating to strengthen the present stage of photovoltaic power system becomes a role of alternative energy. The experiment shows that it can boost the c-Si photovoltaic to generate electric power about 19% to 43% when using at peak load time to decide the tilt angle and azimuth angle of fixed- c-Si photovoltaic, that generating electric power will match the peak demand of Taiwanese power load and is different when comparing of the installation which using by latitude to decide the tilt angle and azimuth angle.