Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology
碩士 === 國立高雄第一科技大學 === 電子工程系碩士在職專班 === 105 === This thesis is to study how to promote the conversion efficiency of solar cells by integrating Archimedean solids with Fresnel lens. We have investigated the material of solar panels, compared the lens types, analyzed the focus distance and attempted dif...
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ndltd-TW-105NKIT14280052019-05-15T23:32:17Z http://ndltd.ncl.edu.tw/handle/6f3488 Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology 以阿基米德立體追日系統結合菲涅爾透鏡技術實現太陽能光電轉換效率最佳化之設計 LIAO,YEN-FEI 廖雁飛 碩士 國立高雄第一科技大學 電子工程系碩士在職專班 105 This thesis is to study how to promote the conversion efficiency of solar cells by integrating Archimedean solids with Fresnel lens. We have investigated the material of solar panels, compared the lens types, analyzed the focus distance and attempted different angles to find the best power generation performance of solar panels. This research focused on the commonly-used monocrystalline silicon solar cells and compared the performance difference between monocrystalline silicon solar cells and polycrystalline silicon solar cells. We experimented various lens combinations, including the daily-used glass lens, the single Fresnel lens, the array of single Fresnel lenses and the self-made 3D Fresnel lens, to find the optimal conditions for solar power generation. The experiment was conducted on the self-made multi-function garden lamps to find the optimal solar power conversion. We expect that this design principle will be applied in the daily life and popularized in many areas. Meanwhile, the future applications will result in more experimental data for us to study the economic benefits of solar power conversion performance. SHEN,CHIH-LUNG 沈志隆 2017 學位論文 ; thesis 60 zh-TW |
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碩士 === 國立高雄第一科技大學 === 電子工程系碩士在職專班 === 105 === This thesis is to study how to promote the conversion efficiency of solar cells by integrating Archimedean solids with Fresnel lens. We have investigated the material of solar panels, compared the lens types, analyzed the focus distance and attempted different angles to find the best power generation performance of solar panels.
This research focused on the commonly-used monocrystalline silicon solar cells and compared the performance difference between monocrystalline silicon solar cells and polycrystalline silicon solar cells. We experimented various lens combinations, including the daily-used glass lens, the single Fresnel lens, the array of single Fresnel lenses and the self-made 3D Fresnel lens, to find the optimal conditions for solar power generation.
The experiment was conducted on the self-made multi-function garden lamps to find the optimal solar power conversion. We expect that this design principle will be applied in the daily life and popularized in many areas. Meanwhile, the future applications will result in more experimental data for us to study the economic benefits of solar power conversion performance.
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SHEN,CHIH-LUNG |
author_facet |
SHEN,CHIH-LUNG LIAO,YEN-FEI 廖雁飛 |
author |
LIAO,YEN-FEI 廖雁飛 |
spellingShingle |
LIAO,YEN-FEI 廖雁飛 Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology |
author_sort |
LIAO,YEN-FEI |
title |
Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology |
title_short |
Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology |
title_full |
Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology |
title_fullStr |
Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology |
title_full_unstemmed |
Optimal Efficiency Design for Solar-Energy Photoelectric Conversion Based on Archimedes Stereoscopic System Embedding Fresnel Len Technology |
title_sort |
optimal efficiency design for solar-energy photoelectric conversion based on archimedes stereoscopic system embedding fresnel len technology |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/6f3488 |
work_keys_str_mv |
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