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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Assessment of the maximum loadability point of a power system after third zone of distance relay corrective actions
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Assessment of the maximum loadability point of a power system after third zone of distance relay corrective actions

机译:在距离继电器第三动作区之后评估电力系统的最大负载点

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In this paper, the operation of a system and distance relay is improved during voltage instability by using an improved strategy. After detecting the voltage instability, the third zone is blocked. However, the system is prone to voltage collapse. Shunt capacitor compensation and a load shedding scheme can be used to protect the system from voltage collapse conditions. Load shedding plans can be performed based on a reduction in the power flow in the line where the relay is located. The reason is that the minimum eigenvalue of the load flow Jacobian (reduced and unreduced Jacobians) is increased and the static voltage stability is improved. After the shunt capacitor compensation and load shedding, the relay margin becomes positive, impedance comes out from the third zone, and the relay does not need to remain blocked. The maximum loadability point (MLP) is increased by performing a control action in the system. To accomplish this strategy, the 14-bus IEEE test system is used.
机译:在本文中,通过使用改进的策略可以改善电压不稳定期间系统和距离继电器的操作。在检测到电压不稳定之后,第三区域被阻塞。但是,系统容易出现电压崩溃。并联电容器补偿和减载方案可用于保护系统免受电压崩溃的影响。可以基于减少继电器所在线路中的潮流来执行减载计划。原因是增加了潮流雅可比方程的最小特征值(减小和未减小的雅可比方程),并且改善了静态电压稳定性。在并联电容器补偿和减载之后,继电器容限变为正,阻抗从第三区域出来,并且继电器无需保持阻塞状态。通过在系统中执行控制操作,可以增加最大可装载点(MLP)。为了实现这一策略,使用了14总线IEEE测试系统。

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