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Open-switch Fault-tolerant Control of Power Converters in a Grid-connected Photovoltaic System

机译:并网光伏系统中功率变换器的开路开关容错控制

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This paper presents the study of an open switch fault tolerant control of a grid-connected photovoltaic system. The studied system is based on the classical DC–DC boost converter and a bidirectional 6-pulse DC–AC converter. The objective is to provide an open-switch fault detection method and fault-tolerant control for both of boost converter and grid-side converter (GSC) in a grid-connected photovoltaic system. A fast fault detection method and a reliable fault-tolerant topology are required to ensure continuity of service, and achieve a faster corrective maintenance. In this work, the mean value of the error voltages is used as fault indicator for the GSC, while, for the boost converter the inductor current form is used as fault indicator. The fault-tolerant topology was achieved by adding one redundant switch to the boost converter, and by adding one redundant leg to the GSC. The results of the fault tolerant control are presented and discussed to validate the proposed approach under different scenarios and different solar irradiances.
机译:本文提出了并网光伏系统的开路开关容错控制的研究。所研究的系统基于经典的DC-DC升压转换器和双向6脉冲DC-AC转换器。目的是为并网光伏系统中的升压转换器和电网侧转换器(GSC)提供一种开路开关故障检测方法和容错控制。需要一种快速的故障检测方法和可靠的容错拓扑,以确保服务的连续性并实现更快的纠正性维护。在这项工作中,误差电压的平均值用作GSC的故障指示器,而对于升压转换器,电感电流形式用作故障指示器。容错拓扑是通过在升压转换器中添加一个冗余开关,以及在GSC中添加一个冗余支路来实现的。给出并讨论了容错控制的结果,以验证所提出的方法在不同场景和不同太阳辐射下的有效性。

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