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Optimization of a spectrum splitter using differential evolution algorithm for solar cell applications

机译:使用差分进化算法优化光谱分离器用于太阳能电池

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A spectrum splitter can be used to spatially multiplex different solar cells that have high efficiency in mutually exclusive parts of the solar spectrum. We investigated the use of a surface-relief grating made of dielectric materials for specularly transmitting one part of the solar spectrum while the other part is transmitted non-specularly and the total reflectance is very low. A combination of (ⅰ) the rigorous coupled-wave approach for computing the reflection and transmission coefficients of the grating and (ⅱ) the differential evolution algorithm for optimizing the grating shape was devised as a design tool. We used this tool to optimize two candidate gratings and obtained definite improvements to the initial guesses for the structural and constitutive parameters. Significant spectrum splitting can be achieved if the angle of incidence does not exceed 15°.
机译:光谱分离器可以用于空间复用在太阳能光谱的互斥部分中具有高效率的不同太阳能电池。我们研究了由介电材料制成的表面浮雕光栅用于镜面透射太阳光谱的一部分,而另一部分非镜面透射的原因,并且总反射率非常低。设计了(ⅰ)用于计算光栅反射和透射系数的严格耦合波方法与(ⅱ)用于优化光栅形状的差分演化算法的组合作为设计工具。我们使用该工具优化了两个候选光栅,并对结构和本构参数的初始猜测进行了明确的改进。如果入射角不超过15°,则可以实现显着的光谱分裂。

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