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The III–V Triple-Junction Solar Cell Characteristics and Optimization with a Fresnel Lens Concentrator

机译:菲涅尔透镜聚光器的III–V三结太阳能电池特性和优化

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At present, the Fresnel lens are commonly used as the condenser in high-concentrating photovoltaic (HCPV) modules. It is ideally believed that the output power of a III–V triple-junction solar cell which is placed on the focal plane of a Fresnel lens is the largest, because the intensity of the sunlight on the focal plane is the largest. Actually, according to our work, the dispersion of sunlight through a Fresnel lens and the nonparallelism and divergence of the incident light will lead to changes in the spectrum and the homogeneity of illumination, and cause a drop of the solar cell output. In this paper, the influence of the dispersion and nonparallel incidence of the light on the output of a triple-junction solar cell at different positions near the focal plane were theoretically studied, combined with the light-tracing simulation method and triple-junction solar cell circuit network model. The results show that the III–V triple-junction solar cell has the highest output power in both sides of the focal plane positions. The output power can be increased by about 15% after being optimized. The simulation results were verified by the experiments.
机译:目前,菲涅耳透镜通常用作高浓度光伏(HCPV)模块中的聚光镜。理想地认为,放置在菲涅耳透镜焦平面上的III-V三结太阳能电池的输出功率最大,因为焦平面上的阳光强度最大。实际上,根据我们的工作,太阳光通过菲涅耳透镜的散射以及入射光的不平行和发散将导致光谱的变化和照明的均匀性,并导致太阳能电池输出的下降。本文结合光跟踪模拟方法和三结太阳能电池,从理论上研究了光的色散和非平行入射对焦面附近不同位置的三结太阳能电池输出的影响。电路网络模型。结果表明,III-V三结太阳能电池在焦平面位置的两侧都具有最高的输出功率。优化后,输出功率可以提高约15%。实验验证了仿真结果。

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