Optimal Protection Coordination of Islanded Microgrids Utilizing an Adaptive Virtual Impedance Fault Current Limiter

T. Sati, M. Azzouz, M. Shaaban
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引用次数: 1

Abstract

Inverter-interfaced distributed generators (IIDGs) have limited fault current contributions compared to those of synchronous-based DGs. These low fault currents impose challenges on microgrid protection. This paper proposes a sensitive protection scheme for islanded microgrids that adopt droop-based IIDGs as the primary power source. Virtual impedance-fault current limiters (VI-FCLs) are employed in the inverter control scheme to limit IIDGs fault currents and protect inverter switches from overcurrent. The VI-FCLs are adapted to provide sensible fault currents. A two-stage optimization method is proposed to achieve optimal protection coordination (OPC) of directional overcurrent relays (DOCRs). Stage I is devoted to short-circuit currents calculation while involving different adaptive VI-FCL characteristics. In Stage II, the OPC problem is formulated as a nonlinear programming problem to obtain the minimum relays' total operating time while satisfying protection coordination constraints and solved to obtain the optimal DOCRs set groups. The performance of the proposed protection scheme is tested on a radial microgrid. The results confirm that the proposed protection scheme successfully maintains protection coordination using a single set group for a range of fault resistances.
基于自适应虚拟阻抗故障限流器的孤岛微电网优化保护协调
与基于同步的分布式发电机相比,逆变器接口分布式发电机(iidg)具有有限的故障电流贡献。这些低故障电流对微电网保护提出了挑战。本文提出了一种采用基于下垂的iidg作为主电源的孤岛微电网敏感保护方案。在逆变器控制方案中采用虚拟阻抗-故障限流器(VI-FCLs)来限制iidg的故障电流,保护逆变器开关不发生过流。vi - fcl适应提供敏感的故障电流。提出了一种两阶段优化方法来实现定向过流继电器(docr)的最佳保护协调。第一阶段是短路电流的计算,涉及到不同的自适应VI-FCL特性。在第二阶段,将OPC问题表述为满足保护协调约束的最小继电器总运行时间的非线性规划问题,求解得到最优docr集群。在径向微电网上对该保护方案进行了性能测试。结果表明,所提出的保护方案在一定的故障电阻范围内成功地保持了单组保护协调。
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