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Improved optimization strategy for irradiance equalization in dynamic photovoltaic arrays

机译:改进的动态光伏阵列辐照度均衡优化策略

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摘要

This paper proposes an improved strategy for the optimization of dynamic photovoltaic arrays (DPVA) utilizing the ‘irradiance equalization’ reconfiguration strategy. This type of reconfigurable array is already very robust as it amalgamates the flexibility of dynamic reconfiguration with the averaging ability of Total Cross Tied (TCT) array architecture. This paper identifies four areas to further increase the power yield and significantly reduce the time for a return on investment. Results indicate potential efficiency improvements of more than 10% in some cases, and between 4-10% across a number of random and abrupt shading conditions. As in any DPVA system the proposed approaches require additional hardware and advanced control algorithms compared to a static PV array, but anyone implementing a dynamic array has already committed themselves to including the majority of this infrastructure. This investigation supports the idea of a fully dynamic IEq-DPVA with the ability to resize its array dimensions while implementing a rapid sorting algorithm based on information gathered using a novel precision irradiance profiling technique.
机译:本文提出了一种利用“辐照度均衡”重新配置策略优化动态光伏阵列(DPVA)的改进策略。这种类型的可重新配置阵列已经非常健壮,因为它可以将动态重新配置的灵活性与总交叉绑定(TCT)阵列架构的平均能力融合在一起。本文确定了四个领域,以进一步提高发电量并显着减少投资回报时间。结果表明,在某些情况下,潜在效率提高了10%以上,在许多随机和突然的阴影条件下,效率提高了4-10%。与在任何DPVA系统中一样,与静态PV阵列相比,所提出的方法需要额外的硬件和先进的控制算法,但是任何实现动态阵列的人都已经承诺要包括该基础结构的大部分。这项研究支持完全动态的IEq-DPVA的想法,它具有调整其数组尺寸的能力,同时可以基于使用新型精密辐照度分析技术收集的信息实施快速排序算法。

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