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Adaptive Protection Strategy in a Microgrid Under Disparate Operating Modes

机译:不同操作模式下微电网中的自适应保护策略

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摘要

Microgrids usually operate in grid-connected or islanded mode. Due to substantial variation in fault current, same protection coordination scheme cannot be applied in both modes. Moreover, network topology keeps on changing due to momentary events. In this paper, an adaptive protection strategy is proposed to avoid any miscoordination between numerical directional overcurrent relays under a fault instance. Through this scheme, the relay settings can be updated online as per the operating mode and prevailing topology. The proposed tactic employs a central protection center with data storage and programming capability, smart electronic devices and communication channels to acquire and transfer real-time data. The relay coordination problem is formulated as a non-linear optimization function, with coordination time interval constraints. The optimal relay settings under both operating modes are obtained through non-linear programming and hybrid genetic algorithm non-linear programming method. To handle contingencies of communication channel failure, a novel inclusive mode settings are also introduced to protect the system in both modes even with line or DG outages. The proposed adaptive approach is tested on a nine bus radial distribution system with DGs. It has been found that the proposed scheme provides reliable system protection under different operating scenario.
机译:微电网通常以网格连接或岛状模式运行。由于故障电流的大量变化,两种模式都不能应用相同的保护协调方案。此外,由于瞬间事件,网络拓扑在不断变化。在本文中,提出了一种自适应保护策略,以避免故障实例下数值定向过电流继电器之间的任何误差。通过该方案,可以根据操作模式和普遍的拓扑在线在线更新中继设置。建议的策略采用中央保护中心,具有数据存储和编程能力,智能电子设备和通信通道,以获取和传输实时数据。中继协调问题被配制为非线性优化功能,具有协调时间间隔约束。通过非线性编程和混合遗传算法非线性编程方法获得两个操作模式下的最佳中继设置。为了处理通信通道失败的突发事件,还引入了一种新的包容模式设置,以便即使使用线路或DG停电也可以保护系统。拟议的自适应方法在具有DGS的九母径向分布系统上进行测试。已经发现,该方案在不同的操作场景下提供了可靠的系统保护。

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