A coherency based generation rescheduling against multiple contingencies

Mohammed Mahdi, V. M. Istemihan Genc
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引用次数: 1

Abstract

In this paper, a preventive control method against transient instabilities due to a set of critical contingencies that could occur in a large power system is proposed. The generation rescheduling, adopted as the preventive control, is based on the coherency between the generators. The rescheduling is done by attempting to bring the generators’ rotor speeds equal after a three phase fault that might cause instability. The proposed methodology involves off-line simulations to determine the system response and to check the severity of each contingency. For each critical contingency, a scaling factor is assigned to scale the speed trajectory of the contingency. Active-set sequential quadratic programming (SQP) is used to optimize the scaling factors in such a way that the rescheduling method based on the scaling factors improves the dynamic security and restores the system’s stability for all contingencies that are taken into account.
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针对多偶然性的基于一致性的发电重调度
本文提出了一种针对大型电力系统中可能发生的一系列关键突发事件引起的暂态不稳定的预防性控制方法。作为预防控制的发电重调度是基于发电机之间的相干性。重新调度是通过尝试在可能导致不稳定的三相故障后使发电机的转子转速相等来完成的。提出的方法包括离线模拟,以确定系统响应并检查每个意外事件的严重性。对于每个关键偶然性,分配一个缩放因子来缩放偶然性的速度轨迹。利用活动集序列二次规划(SQP)对比例因子进行优化,使得基于比例因子的重调度方法提高了系统的动态安全性,并恢复了系统在考虑所有突发事件时的稳定性。
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