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Multi-objective control scheme for operation of parallel inverter-based microgrids during asymmetrical grid faults

机译:不对称电网故障在不对称基于逆变器微电网的运行多目标控制方案

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摘要

The growing interest in connecting more distributed generation (DG) units to the utility grid, microgrids deal with the various challenges to satisfy a sufficient level of ancillary services such as active power oscillations (APOs), reactive power oscillations (RPOs), fault ride-through (FRT) capability, and overcurrent problem. Hence, for parallel operated grid-connected inverters (GCIs) based MG, this study presents a multi-objective control scheme that simultaneously ensures elimination of the collective APOs/RPOs at point of common coupling (PCC), overcurrent protection and reactive power injection. One of the significant parts of this study compared with similar existing studies is that provides reactive power support capability to fulfil the FRT requirements of the grid-connected multi-DG units and to remain grid-connected during asymmetrical grid faults. A current restraining control is also presented to ensure the safe operation of the MG system and to avoid overcurrent. The cancellation of the collective APOs and RPOs at the PCC for parallel operation of the GCIs has been achieved by using adjustable control coefficients and demonstrated with theoretical analyses in detail. Extensive case studies are presented and discussed to demonstrate the performance of the proposed ideas and to meet the shortcomings of the previous studies.
机译:将更多分布式发电(DG)单元连接到公用事业电网,微电网越来越多的兴趣涉及满足足够的辅助服务等各种挑战,例如有源电力振荡(APO),无功功率振荡(RPO),故障乘坐 - 通过(frt)能力和过流问题。因此,对于基于基于MG的并行操作的网格连接的逆变器(GCIS),本研究提出了一种多目标控制方案,其同时确保在共同耦合(PCC),过电流保护和无功电流点处消除集体APOS / RPO。与类似现有研究相比,本研究的重要部分之一是提供无功功率支持能力,以满足网格连接的多DG单元的FRT要求,并在不对称的网格故障期间保持网格连接。还提出了目前的限制控制以确保MG系统的安全操作并避免过电流。通过使用可调节的控制系数,已经通过使用可调节的控制系数来实现用于PCC的集体APO和RPO,并通过详细说明理论分析。提出并讨论了广泛的案例研究以证明拟议的想法的表现和满足以前研究的缺点。

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