通过连锁故障分析识别和评估电力系统对输电资产停运的脆弱性

Identifying and assessing power system vulnerabilities to transmission asset outages via cascading failure analysis

Reliability Engineering and System Safety · 2021
被引 108 · 同刊同年前 7%
ABS 3

中文导读

提出一种结合交流连锁故障模拟和元启发式优化的方法,用于识别输电网络中关键支路及最严重连锁故障的支路组合,帮助运营商制定策略减轻意外或蓄意事件的影响。

Abstract

Power systems as critical infrastructure are an integral part of human society and are therefore of paramount importance to modern life. Vulnerabilities in the system, that are revealed either by accidental or deliberate events, can cause large losses of power supply with sever social and economic consequences. A tool that identifies the vulnerabilities in a power system can provide the operators the means to support reliable power system operations. This paper presents a methodology for power system vulnerability assessment that couples an AC based cascading failure simulation model and a meta-heuristic optimization procedure. The objectives of the assessment are to (1) rank the most important branches in the transmission grid, and (2) identify sets of branches if simultaneously tripped will cause the cascade with highest intensity. The first objective is achieved by ranking the criticality of the branches using two criteria (i) the impact that each branch failure has on the DNS and (ii) the frequency of line overload. The second objective is achieved by hard linking an AC based cascading failure simulation model and a meta-heuristic based optimization procedure. The methodology allows the generation and the identification of vulnerability scenarios, and therefore, provides insights that can be used by operators in developing strategies to minimize the effects of accidental and deliberate events. The algorithm developed for the purpose of this study is applied to the IEEE 118-bus test system and the Swiss power grid. The results demonstrate the capability of the proposed methodology for assessing power system vulnerability.

电力系统脆弱性评估连锁故障可靠性工程输电网络