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Recovery of inter-row shading losses using differential power-processing submodule DC-DC converters

机译:使用差分功率处理子模块DC-DC转换器恢复行间阴影损失

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Large commercial photovoltaic (PV) systems can experience regular and predictable energy loss due to both inter-row shading and reduced diffuse irradiance in tightly spaced arrays. This paper investigates the advantages of replacing bypass diodes with submodule-integrated DC-DC converters (subMICs) to mitigate these losses. Yearly simulations of commercial-scale PV systems were conducted considering a range of row-to-row pitches. In the limit case of array spacing (unity ground coverage), subMICs can confer a 7% increase in annual energy output and peak energy density (kW h/m(2)). Simulation results are based on efficiency assumptions experimentally confirmed by prototype submodule differential power-processing converters. Published by Elsevier Ltd.
机译:大型商用光伏(PV)系统由于行间阴影和在紧密排列的阵列中减少的散射辐照度,可能会遭受规则且可预测的能量损失。本文研究了用集成了子模块的DC-DC转换器(subMIC)替代旁路二极管以减轻这些损耗的优势。考虑到行间距的范围,每年进行商业规模光伏系统的仿真。在阵列间距(统一地面覆盖)的极限情况下,subMIC可以使年度能量输出和峰值能量密度(kW h / m(2))提高7%。仿真结果基于效率假设,该效率假设由原型子模块差分功率处理转换器进行了实验验证。由Elsevier Ltd.发布

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