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Theoretical Analysis of Prospects of Organic Photovoltaics as a Multi-Functional Solar Cell and Laser Power Converter for Wireless Power Transfer

机译:有机光伏作为无线电力传输多功能太阳能电池和激光功率转换器的有机光伏电视前景的理论分析

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摘要

Few reports have researched on utilization of laser power conversion systems for wireless power transfer in aeronautical applications. III-V compound semiconductors are commonly used as photovoltaic (PV) power converters in the previous studies. We propose the prospects of using organic absorbers as PV power converters. For laser power conversion to be applied tor portable devices, the PV module should be easily processable, thin, low-weight, and printable on flexible substrates. Organic PVs provide all the above advantages, and thus, could serve as a potential candidate for laser power harvesting applications. Moreover, they can also be made transparent, which could be utilized in power harvesting lamination coatings and windows. We had simulated the possibility of using single-junction and tandem photovoltaic structures for 670 nm and 850 nm laser power harvesting. FDTD simulations were conducted to optimize the PV structure in order to maximize the absorption at the laser wavelengths. A maximum PCE of 16.17% for single-junction PV and 24.85% for tandem PV was theoretically obtained.
机译:很少有报道已经研究了航空应用中的无线电力传输激光功率转换系统的利用。 III-V复合半导体通常用作先前研究中的光伏(PV)功率转换器。我们提出了使用有机吸收剂作为光伏电力转换器的前景。对于待施加的激光功率转换,PV模块应易于加工,薄,低重量,并在柔性基板上打印。有机PVS提供了所有上述优点,因此可以用作激光功率收集应用的潜在候选者。此外,它们也可以透明,可用于电力收集层压涂层和窗户。我们已经模拟了使用单结和串联光伏结构的可能性670nm和850nm激光功率收获。进行FDTD仿真以优化PV结构,以最大化激光波长的吸收。理论上,单结PV和24.85%的最大PCE为14.85%的串联PV。

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