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Optimal Protection Coordination for Microgrids With Grid-Connected and Islanded Capability

机译:具有并网和孤岛能力的微电网的最佳保护协调

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Microgrids can be operated either grid-connected to reduce system losses and for peak shaving or islanded to increase reliability and provide backup power during utility outage. Such dual configuration capability imposes challenges on the design of the protection system. Fault current magnitudes will vary depending on the microgrid operating mode. In this paper, a microgrid protection scheme that relies on optimally sizing fault current limiters and optimally setting directional overcurrent relays is proposed. The protection scheme is optimally designed taking into account both modes of operation (grid-connected and islanded). The problem has been formulated as a constrained nonlinear programming problem and is solved using the genetic algorithm with the static penalty constraint-handling technique. The proposed approach is tested on two medium-voltage networks: a typical radial distribution system and on the IEEE 30-bus looped power distribution system equipped with directly connected conventional synchronous generators.
机译:微电网既可以并网运行以减少系统损耗并进行调峰运行,也可以孤岛运行以提高可靠性并在停电期间提供备用电源。这种双重配置功能对保护系统的设计提出了挑战。故障电流的大小将取决于微电网的工作模式。本文提出了一种微电网保护方案,该方案依赖于故障电流限制器的最佳尺寸和方向过流继电器的最佳设置。考虑到两种运行模式(并网和孤岛运行),对保护方案进行了优化设计。该问题已被表述为约束非线性规划问题,并使用带有静态罚分约束处理技术的遗传算法来解决。该方法在两个中压网络上进行了测试:一个典型的径向配电系统,以及在配备有直接连接的常规同步发电机的IEEE 30总线环路配电系统上。

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