Novel differential power processing technique for uneven partial shading mitigation in PV systems

Subhash Murkute, V. A. Kulkarni (Deodhar)
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Abstract

Photovoltaic (PV) system output power greatly depends on environmental operating conditions. Partial shaded condition (PSC) operates PV string under mismatch. PV module mismatch has been one of the major causes for reduced amount of output power. Maximizing the amount of energy extraction from PV system under mismatch greatly influenced by conversion efficiency as well as the mismatch mitigation topology used. Differential power processing (DPP) is one of the advanced techniques to deal with mismatch conditions and enhance power output from a PV system. In this paper hybrid modular DPP topology is presented. The proposed technique mitigates the effect of mismatches at submodule and enhance power extraction from PV string. Since in majority shading on a PV module is nonuniform. The conversion efficiency of module level DPP shading mitigation techniques enhanced using submodule level DPP architecture. To demonstrate its applicability simulation study is carried out in MATLAB Simulink and results are compared with traditional bypass method and module level DPP. Simulation results showed the reduction in mismatch loss and improvement in efficiency and power output.
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用于缓解光伏系统不均匀部分遮阳的新型差分功率处理技术
光伏(PV)系统的输出功率在很大程度上取决于环境运行条件。部分遮光条件(PSC)使光伏组串在不匹配的情况下运行。光伏模块不匹配是导致输出功率降低的主要原因之一。如何在失配情况下最大限度地从光伏系统中提取能量,很大程度上取决于转换效率以及所使用的失配缓解拓扑结构。差分功率处理(DPP)是处理失配条件并提高光伏系统功率输出的先进技术之一。本文介绍了混合模块化 DPP 拓扑。所提出的技术可减轻子模块失配的影响,提高光伏组串的功率提取。由于大多数光伏模块上的阴影是不均匀的。使用子模块级 DPP 架构可提高模块级 DPP 遮光缓解技术的转换效率。为了证明其适用性,我们在 MATLAB Simulink 中进行了仿真研究,并将结果与传统旁路方法和模块级 DPP 进行了比较。仿真结果表明,失配损耗减少了,效率和功率输出提高了。
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