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A new decentralized voltage control scheme of an autonomous microgrid under unbalanced and nonlinear load conditions

机译:不平衡和非线性负载条件下自主微电网的新型分散电压控制方案

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This paper presents an effective voltage control strategy for the autonomous operation of a medium voltage (MV) microgrid under nonlinear and unbalanced load conditions. The main objectives of this strategy are to effectively compensate the harmonic and negative-sequence currents of nonlinear and unbalanced loads using distributed generation (DG) units. The proposed control strategy consists of a multi-proportional resonant controller (MPRC) whose parameters are assigned with particle swarm optimization (PSO) algorithm. The optimization function is defined to minimize the tracking error at the specific harmonics considering the stability limitations. In this paper the performance of the proposed controller is investigated for a single DG unit. Due to the fact that DG units can be decentralized, this strategy generalizes for multi-DG unit networks. The performance of the proposed control scheme is verified by using digital time-domain simulation studies in the PSCAD/EMTDC software environment.
机译:本文提出了一种有效的电压控制策略,用于非线性和不平衡负载条件下中压(MV)微电网的自主运行。该策略的主要目标是使用分布式发电(DG)单元有效地补偿非线性负载和不平衡负载的谐波电流和负序电流。所提出的控制策略包括一个多比例谐振控制器(MPRC),其参数由粒子群优化(PSO)算法分配。考虑到稳定性限制,定义了优化功能以使特定谐波处的跟踪误差最小。在本文中,针对单个DG单元研究了所建议控制器的性能。由于DG单位可以分散,因此该策略适用于多DG单位网络。通过在PSCAD / EMTDC软件环境中使用数字时域仿真研究,验证了所提出控制方案的性能。

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