A systematic method of interconnection optimization for dense-array concentrator photovoltaic system

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Abstract

This paper presents a new systematic approach to analyze all possible array configurations in order to determine the most optimal dense-array configuration for concentrator photovoltaic (CPV) systems. The proposed method is fast, simple, reasonably accurate, and very useful as a preliminary study before constructing a dense-array CPV panel. Using measured flux distribution data, each CPV cells' voltage and current values at three critical points which are at short-circuit, open-circuit, and maximum power point are determined. From there, an algorithm groups the cells into basic modules. The next step is I-V curve prediction, to find the maximum output power of each array configuration. As a case study, twenty different I-V predictions are made for a prototype of nonimaging planar concentrator, and the array configuration that yields the highest output power is determined. The result is then verified by assembling and testing of an actual dense-array on the prototype. It was found that the I-V curve closely resembles simulated I-V prediction, and measured maximum output power varies by only 1.34%. © 2013 Fei-Lu Siaw and Kok-Keong Chong.

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Siaw, F. L., & Chong, K. K. (2013). A systematic method of interconnection optimization for dense-array concentrator photovoltaic system. The Scientific World Journal, 2013. https://doi.org/10.1155/2013/275169

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