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題 名 | 聚光型太陽能電池模組焊接之研究=Concentrator Solar Cell Welding Research |
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作 者 | 翁國亮; 陳國輝; | 書刊名 | 創新與經營管理學刊 |
卷 期 | 2:1 2011.07[民100.07] |
頁 次 | 頁65-79 |
分類號 | 468.1 |
關鍵詞 | 聚光型太陽電池; 真空焊接; 六個標準差; 田口實驗方法; HCPV; Vacuum welding; TOPSIS; Six sigma; Taguchi method; |
語 文 | 中文(Chinese) |
中文摘要 | 聚光發電方式是使用透鏡將太陽光線聚集於狹小的面積上來提高發電效率及經濟效率稱為聚光型太陽電池(High Concentrator Photovoltaic)簡稱HCPV。假如使用聚光型太陽電池聚光倍率為1000倍的透鏡時,因為土地使用率比結矽晶類電池小數倍、晶圓廠使用量亦遠小於結晶矽類電池,故單位模組的太陽能電池單元的成本可降至結晶矽類電池單元的1/10左右。然聚光的過程因長波長光源有發熱之問題,會引起高溫而損傷太陽能電池單元及發電系統,探究其原因封裝不良為其損壞之最大原因。亦有以抑制聚光率的方式來控制溫度、但缺點是影響發電效率。根本解決之道在於封裝製程的改進。本研究以TOPSIS歸納最佳之焊接方式,運用六個標準差(DMAIC)步驟來定義製程條件及問題,並結合田口實驗方法尋找出最佳化的溫度曲線,最後以溫度循環測試驗證產品品質。控制製程假焊率(Void)低於3%之理想焊接,以保證聚光型太陽電池發電單元長期使用,解決產業製程瓶頸。 |
英文摘要 | High Concentrator Photovoltaic is to use the sun's rays come together in a small area of improved efficiency and economic efficiency of power generation. If the use of concentrating solar concentrator lens magnification 1000 times. The unit solar cell module cost can be reduced to crystalline silicon base cell type 1/10. However, the process of concentrating the heat due to long wavelength light source of the problem, it will cause damage to high temperature solar cells and power generation systems. Due to the reason for damage to package the maximum negative reasons. Also to inhibit the rate of the condenser to control the temperature, but the drawback is the efficiency of power generation. The fundamental solution lies in improved packaging process. This study was to optimized the best welding by TOPSIS. The use of Six Sigma (DMAIC) steps to define the process conditions and problems. Taguchi method to find the appropriate temperature curve. Finally, thermal cycle testing and validation of product quality. Make the process less than 3% vold. Concentrating HCPV sub-mount units to ensure long-term used, to solve industrial process bottlenecks. |
本系統中英文摘要資訊取自各篇刊載內容。