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Monolithic Interconnected Modules (MIMs) for Thermophotovoltaic Energy Conversion

机译:用于热光电能量转换的单片互连模块(MIM)

摘要

Monolithic Interconnected Modules (MIM) are under development for thermophotovoltaic (TPV) energy conversion applications. MIM devices are typified by series-interconnected photovoltaic cells on a common, semi-insulating substrate and generally include rear-surface infrared (IR) reflectors. The MIM architecture is being implemented in InGaAsSb materials without semi-insulating substrates through the development of alternative isolation methodologies. Motivations for developing the MIM structure include: reduced resistive losses, higher output power density than for systems utilizing front surface spectral control, improved thermal coupling and ultimately higher system efficiency. Numerous design and material changes have been investigated since the introduction of the MIM concept in 1994. These developments as well as the current design strategies are addressed.
机译:单片互连模块(MIM)正在开发中,用于热光电(TPV)能量转换应用。 MIM设备的典型特征是在一个普通的半绝缘基板上串联互连的光伏电池,并且通常包括背面红外(IR)反射器。通过开发其他隔离方法,可以在InGaAsSb材料中实现MIM架构,而无需对基板进行半绝缘。与采用前部光谱控制的系统相比,开发MIM结构的动机包括:降低电阻损耗,提高输出功率密度,改善热耦合并最终提高系统效率。自从MIM概念于1994年引入以来,已经进行了许多设计和材料更改的研究。这些进展以及当前的设计策略都得到了解决。

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