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A novel thermophotovoltaic optical cavity for improved irradiance uniformity and system performance

机译:一种新型热光电光学腔,可提高辐照度均匀性和系统性能

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摘要

It has been demonstrated that a single thermophotovoltaic (TPV) cell can produce a high-output power density. In practical applications, many such cells are arrayed to obtain a high level of output. However, the irradiance on the surface of each cell of an array may be different. This nonuniformity causes mismatch loss in the array and reduces the reliability of the cells. To address these problems, a novel TPV optical cavity with reflectors was proposed to improve the irradiance uniformity of the cell array. A model TPV system using the proposed cavity was built and evaluated for comparison with traditional systems. TracePro and MATLAB software were used to examine the irradiance uniformity of cell arrays and the electrical performance of TPV systems that incorporate these arrays. Besides system efficiency η_(system) and maximum output power P_(max), several critical parameters degree of uniformity N, network efficiency η_(net), and average cell electric power density W_(ave),were used to evaluate the performance of the TPV systems. The results indicate that the proposed cavity improved the irradiance uniformity of the TPV cell array, thereby reducing mismatch loss and enhancing system performance, and it did so with a reduced number of cells.
机译:已经证明,单个热光电(TPV)电池可以产生高输出功率密度。在实际应用中,许多这样的单元被排列以获得高水平的输出。然而,阵列的每个单元的表面上的辐照度可以不同。这种不均匀性导致阵列中的失配损失,并降低了单元的可靠性。为了解决这些问题,提出了一种具有反射器的新型TPV光学腔,以提高单元阵列的辐照均匀性。使用建议的腔体建立了模型TPV系统,并进行了评估,以与传统系统进行比较。使用TracePro和MATLAB软件检查单元阵列的辐照度均匀性以及合并了这些阵列的TPV系统的电性能。除了系统效率η_(system)和最大输出功率P_(max)之外,还使用几个关键参数均匀度N,网络效率η_(net)和平均电池单元功率密度W_(ave)来评估电池的性能。 TPV系统。结果表明,提出的腔改善了TPV电池阵列的辐照度均匀性,从而减少了失配损失并增强了系统性能,并且这样做的目的是减少了电池数量。

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