Techno-economical analysis for PV based water pumping system under partial shading/mismatching phenomena

A. Tomar, S. Mishra, C. N. Bhende
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引用次数: 7

Abstract

Partial shading and/or mismatching phenomena in Photovoltaic (PV) based system cause reduced extraction of PV power and thus adversely impact the performance of PV based system; especially in case of stand-alone PV systems. In this paper four different configurations namely single stage PV system, centralized DC-DC converter based PV system, PV panel level Distributed maximum power point tracking (DMPPT) based PV system and PV module level DMPPT based PV system are considered for water pumping application. Impact of partial shading and mismatching for the considered four configurations is simulated using MATLAB/SIMLINK. Techno-economical analysis is performed in terms of PV power being extracted, saving in power and investment. From the analysis it is found that PV module level DMPPT based configuration is better in various types of random partial shading/mismatching conditions and increase in extracted PV power as compared to single stage and other configurations; justify the cost of additional investment required for additional DC-DC converters. Cost benefit analysis shows that even after considering the cost of additional DC-DC converters required to implement DMPPT PV module level, this method is more economical as it increases the utilization of installed PV capacity.
部分遮阳/不匹配情况下光伏抽水系统的技术经济分析
光伏(PV)系统中的部分遮阳和/或不匹配现象导致PV功率提取减少,从而对PV系统的性能产生不利影响;特别是在独立光伏系统的情况下。本文考虑了单级光伏系统、基于集中式DC-DC变换器的光伏系统、基于光伏板级分布式最大功率点跟踪(DMPPT)的光伏系统和基于光伏组件级分布式最大功率点跟踪(DMPPT)的光伏系统四种不同配置的抽水应用。利用MATLAB/SIMLINK模拟了部分遮阳和不匹配对所考虑的四种配置的影响。从提取光伏发电、节省电力和投资等方面进行了技术经济分析。分析发现,与单级和其他配置相比,基于光伏组件级DMPPT的配置在各种类型的随机部分遮阳/不匹配条件下都更好,并且可以增加提取的光伏功率;证明额外的DC-DC转换器所需的额外投资成本。成本效益分析表明,即使考虑到实现DMPPT光伏组件级别所需的额外DC-DC转换器的成本,该方法也更加经济,因为它提高了光伏装机容量的利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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