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AlGaAs Photovoltaics for Indoor Energy Harvesting in mm-Scale Wireless Sensor Nodes

机译:用于毫米级无线传感器节点中的室内能量收集的AlGaAs光伏

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Indoor photovoltaic energy harvesting is a promising candidate to power millimeter (mm)-scale systems. The theoretical efficiency and electrical performance of photovoltaics under typical indoor lighting conditions are analyzed. Commercial crystalline Si and fabricated GaAs and AlGaAs photovoltaic cells were experimentally measured under simulated AM 1.5 solar irradiation and indoor illumination conditions using a white phosphor light-emitting diode to study the effects of input spectra and illuminance on performance. The AlGaAs cells demonstrated the highest performance with a power conversion efficiency of 21%, with open-circuit voltages >0.65 V under low lighting conditions. The GaAs and AlGaAs cells each provide a power density of nW/mm or more at 250 lx, sufficient for the perpetual operation of present-day low-power mm-scale wireless sensor nodes.
机译:室内光伏能量收集是为毫米级系统供电的有前途的候选者。分析了典型室内照明条件下光伏电池的理论效率和电性能。使用白色磷光发光二极管,在模拟的AM 1.5太阳辐射和室内照明条件下,通过实验测量了商业晶体Si和GaAs和AlGaAs光伏电池,以研究输入光谱和照度对性能的影响。 AlGaAs电池表现出最高的性能,功率转换效率为21%,在低光照条件下的开路电压> 0.65V。 GaAs和AlGaAs电池各自在250 lx时提供nW / mm或更高的功率密度,足以满足当今低功率mm级无线传感器节点的永久运行要求。

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