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Design, development, and analysis of a densely packed 500x concentrating photovoltaic cell assembly on insulated metal substrate

机译:在绝缘金属基板上密集包装的500x聚光光伏电池组件的设计,开发和分析

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摘要

The paper presents a novel densely packed assembly for high concentrating photovoltaic applications, designed to fit 125x primary and 4x secondary reflective optics. This assembly can accommodate 144 multijunction cells and is one of the most populated modules presented so far. Based on the thermal simulation results, an aluminum-based insulated metal substrate has been used as baseplate; this technology is commonly exploited for Light Emitting Diode applications, due to its optimal thermal management. The original outline of the conductive copper layer has been developed to minimize Joule losses by reducing the number of interconnections among the cells in series. Oversized Schottky diodes have been employed for bypassing purposes. The whole design fits the IPC-2221 requirements. The plate has been manufactured using standard electronic processes and then characterized through an indoor test and the results are here presented and commented on. The assembly achieves a fill factor above 80% and an efficiency of 29.4% at 500x, less than 2% lower than that of a single cell commercial receiver. The novel design of the conductive pattern is conceived to decrease the power losses and the deployment of an insulated metal substrate represents an improvement towards the awaited cost-cutting for high concentrating photovoltaic technologies.
机译:本文提出了一种适用于高浓度光伏应用的新型密集封装组件,该组件设计用于安装125倍的初级和4倍的次级反射光学器件。该组件可容纳144个多结电池,并且是迄今为止介绍的人口最多的模块之一。根据热模拟结果,已将铝基绝缘金属基板用作底板。由于其最佳的热管理,该技术通常用于发光二极管应用。已经开发出导电铜层的原始轮廓,以通过减少串联的电池之间的互连数量来最小化焦耳损耗。超大型肖特基二极管已用于旁路目的。整个设计符合IPC-2221的要求。该板已使用标准电子工艺制造,然后通过室内测试进行了表征,并在此处显示和评论结果。该组件在500x时实现了80%以上的填充系数和29.4%的效率,比单小区商用接收器的效率低不到2%。导电图案的新颖设计被认为可以减少功率损耗,并且绝缘金属基板的部署代表了对高浓度光伏技术所期待的成本削减的改进。

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