首页> 外文会议>ASME/JSME thermal engineering joint conference >SPECIFICATION OF MICRO-NANOSCALE RADIATIVE PATTERNS USING INVERSE ANALYSIS FOR INCREASING SOLAR PANEL EFFICIENCY
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SPECIFICATION OF MICRO-NANOSCALE RADIATIVE PATTERNS USING INVERSE ANALYSIS FOR INCREASING SOLAR PANEL EFFICIENCY

机译:使用逆分析提高太阳能电池板效率的微纳米级辐射图案规范

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This work proposes a comprehensive and efficient optimization approach for designing surface patterning for increasing solar panel absorption efficiency using near field radiation effects. Global and local optimization methods, such as the Broyden-Fletcher-Goldfarb-Shanno Quasi-Newton (BFGS-QN) and Simulated Annealing (SA), are employed for solving the inverse near field radiation problem. In particular, a thin amorphous silicon (a-Si) solar panel with periodic silver nano-wire patterning is considered. The design of the silver patterned solar panel is optimized to yield maximum enhancement in photon absorption. The optimization methods reproduce results found in previous literature but with reduced computational expense. Additional geometric parameters not discussed in previous work are included in the optimization analysis, further allowing for increased absorption enhancement. Both the BFGS-QN and SA methods give efficient results, providing designs with enhanced absorption.
机译:这项工作提出了一种综合高效的优化方法,用于使用近场辐射效应提高太阳能电池板吸收效率的表面图案化。全局和局部优化方法,例如Br​​oyden-Fletcher-Goldfarb-Shanno准牛顿(BFGS-QN)和模拟退火(SA),用于解决近场辐射问题的逆逆辐射问题。特别地,考虑了具有周期性银纳米线图案的薄的非晶硅(A-Si)太阳能电池板。银图案太阳能电池板的设计被优化,以产生光子吸收的最大增强。优化方法在以前的文献中重现结果,但计算费用减少。在以前的工作中未讨论的额外几何参数包括在优化分析中,进一步允许增加吸收增强。 BFGS-QN和SA方法都提供有效的结果,提供具有增强吸收的设计。

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