Fast Generation Redispatch Techniques for Automated Remedial Action Schemes

Hao Huang, M. Kazerooni, S. Hossain-McKenzie, Sriharsha Etigowni, S. Zonouz, K. Davis
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引用次数: 7

Abstract

To ensure power system operational security, it not only requires security incident detection, but also automated intrusion response and recovery mechanisms to tolerate failures and maintain the system's functionalities. In this paper, we present a design procedure for remedial action schemes (RAS) that improves the power systems resiliency against accidental failures or malicious endeavors such as cyber attacks. A resilience-oriented optimal power flow is proposed, which optimizes the system security instead of the generation cost. To improve its speed for online application, a fast greedy algorithm is presented to narrow the search space. The proposed techniques are computationally efficient and are suitable for online RAS applications in large-scale power systems. To demonstrate the effectiveness of the proposed methods, there are two case studies with IEEE 24-bus and IEEE 118-bus systems.
自动补救行动方案的快速再调度技术
为了确保电力系统的安全运行,不仅需要安全事件检测,还需要自动入侵响应和恢复机制来容忍故障并维持系统的功能。在本文中,我们提出了一种补救行动方案(RAS)的设计程序,以提高电力系统对意外故障或恶意攻击(如网络攻击)的弹性。提出了一种面向弹性的最优潮流,以优化系统的安全性而不是发电成本。为了提高在线应用的速度,提出了一种快速贪婪算法来缩小搜索空间。所提出的技术计算效率高,适用于大型电力系统的在线RAS应用。为了证明所提出方法的有效性,本文对IEEE 24总线和IEEE 118总线系统进行了两个案例研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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