Reliability value of fast state estimation on power systems

M. Elizondo, Yousu Chen, Zhenyu Huang
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引用次数: 7

Abstract

Monitoring the state of a power system under stress is key to achieving reliable operation. State estimation and timely measurements become more important when applying and designing corrective control actions (manual and automatic) to arrest or mitigate cascading blackouts. The execution time of each process, including state estimation, should be as short as possible to allow for timely action. In this paper, we provide a methodology for estimating one of the components of value of faster and more frequent state estimation: the reliability value of state estimation to assist corrective control actions for arresting or mitigating cascading blackouts. We use an algorithm for estimating the time between successive line trips in a cascading failure. The algorithm combines power flow calculations with characteristics of the protection system to estimate the time between successive equipment trips. Using this algorithm, we illustrate the value of fast state estimation by calculating the time remaining for automatic or manual corrective actions after state estimation is finalized.
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电力系统快速状态估计的可靠性值
监测电力系统在压力下的状态是实现电力系统可靠运行的关键。在应用和设计纠正控制行动(手动和自动)来阻止或减轻级联停电时,状态估计和及时测量变得更加重要。每个流程的执行时间(包括状态估计)应该尽可能短,以便及时采取行动。在本文中,我们提供了一种方法来估计更快和更频繁的状态估计值的一个组成部分:状态估计的可靠性值,以协助阻止或减轻级联停电的纠正控制行动。我们使用了一种算法来估计在级联故障中连续线路跳闸之间的时间。该算法将潮流计算与保护系统的特性相结合,估计出设备连续跳闸之间的时间间隔。利用该算法,我们通过计算状态估计完成后自动或手动纠正动作的剩余时间来说明快速状态估计的价值。
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