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Microgrid reactive power management during and subsequent to islanding process

机译:在孤岛过程中以及孤岛过程之后的微电网无功功率管理

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In a microgrid (MG) with high penetration of single phase induction motors (SPIMs), the voltage recovery process after a fault-induced islanding can be very slow. The reason lies in the stall of SPIMs caused by low voltage. During stalling, a SPIM can withdraw as high as three times of its rated power. This phenomenon can cause many problems including the loss of critical load due to the action of protection devices. This paper explores the role of reactive power support during MG islanding and proposes a novel approach to managing the reactive power generation of electronic-interfaced distributed generators (EIDGs). The concept of sensitivity factors is used in the proposed algorithm for regulating voltages at weak load buses. The optimal sharing of reactive power among EIDGs is formulated as a linear programming problem, which can be solved in a very fast manner for real-time control purpose. The proposed method is validated on a MG test-bed evolved from the IEEE standard 13-bus test feeder.
机译:在具有高渗透率的单相感应电动机(SPIM)的微电网(MG)中,故障引起的孤岛之后的电压恢复过程可能非常缓慢。原因在于由低电压引起的SPIM停顿。在失速期间,SPIM可以提取高达其额定功率三倍的功率。这种现象可能引起许多问题,包括由于保护设备的作用而导致的临界负载损失。本文探讨了无功功率支持在MG孤岛期间的作用,并提出了一种新颖的方法来管理电子接口分布式发电机(EIDG)的无功功率。所提出的算法中使用灵敏度因子的概念来调节弱负载母线上的电压。 EIDG之间无功功率的最佳分配被公式化为线性规划问题,可以为实时控制目的以非常快的方式解决。该方法在由IEEE标准13总线测试馈线演变而来的MG测试台上得到了验证。

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