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New Configuration of Multifunctional Grid-Connected Inverter to Improve Both Current-Based and Voltage-Based Power Quality

机译:多功能并网逆变器的新配置可同时改善基于电流和基于电压的电能质量

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摘要

A multifunctional grid-connected inverter (MFGCI) has been a promising solution to mitigate power quality problems in distributed generation system and microgrid applications. However, the capability of a conventional MFGCI is limited when compensating a voltage-based power quality problem. In this paper, a new configuration of MFGCI is proposed to improve both voltage-based and current-based power quality issues and is named shunt-series-switched MFGCI (SSS-MFGCI). The SSS-MFGCI can be connected in series or parallel to the grid by implementing bidirectional switches to provide different modes of operation depending on various grid disturbances. The required compensating current and voltage are analytically derived considering the grid and load conditions for voltage regulation. This paper also presents the compensation strategies, control scheme, and transition scheme between different modes of the proposed SSS-MFGCI. Simulation results to prove the concept are also included for unbalanced sag and swell cases.
机译:多功能并网逆变器(MFGCI)是缓解分布式发电系统和微电网应用中电能质量问题的有前途的解决方案。但是,当补偿基于电压的电能质量问题时,常规MFGCI的功能会受到限制。在本文中,提出了一种新的MFGCI配置,以改善基于电压和基于电流的电能质量问题,并将其称为并联串联开关MFGCI(SSS-MFGCI)。通过实现双向开关以根据各种电网干扰提供不同的操作模式,可以将SSS-MFGCI串联或并联连接到电网。考虑到电网和负载条件以进行电压调节,可以通过分析得出所需的补偿电流和电压。本文还介绍了所提出的SSS-MFGCI不同模式之间的补偿策略,控制方案和过渡方案。仿真结果证明了该概念也适用于不平衡下垂和膨胀情况。

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