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Impact of Microgrid Operation on the Performance of Overcurrent Relay Coordination and Assessment of Differential Relay Coordination

机译:微电网运作对多电流中继协调性能的影响及差动继电器协调的评估

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摘要

Penetration of distributed generations (DGs) enable microgrid to operate in different mode such as grid-connected and islanded mode with radial and mesh topology. The fault current magnitude and direction varies according to the operating conditions which imposes serious protection challenges and may lead to protection system failure and nonselective relay operation. Thus, the impact of operating conditions on the existing overcurrent relay coordination has been extensively studied in this paper. The overcurrent relay coordination is implemented using genetic algorithm (GA) considering different topology and operating modes of the microgrid. Extensive test results indicate that the existing overcurrent relay coordination may fail during some critical operating conditions and thus, a differential relay coordination scheme is proposed which provides improved performance for microgrid operating in different modes and different network topologies with both synchronous and inverter-based DGs.
机译:分布式世代(DGS)的渗透使微电网能够以不同的模式操作,例如具有径向和网状拓扑的网格连接和孤岛模式。故障电流幅度和方向根据操作条件而变化,这施加了严重的保护挑战,可能导致保护系统故障和非选择性继电器操作。因此,本文已经广泛研究了运行条件对现有的过电力中继协调的影响。考虑到微电网的不同拓扑和操作模式,使用遗传算法(GA)来实现过电流中继协调。广泛的测试结果表明,现有的过电力中继协调可能在某些关键操作条件下失败,因此提出了一种差动中继协调方案,其为微电网以不同模式和基于同步和逆变器的DG的不同网络拓扑进行了改进的微电网操作的性能。

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