考虑断路器故障和恶劣天气的暂态稳定风险评估框架

Q3 Engineering
U. Shahzad
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引用次数: 2

摘要

摘要:由于电力系统的不确定性不断增加,需要发展竞争激烈的电力市场,暂态稳定风险是一个重要的问题。传统的暂态稳定评估的确定性方法没有考虑输入变量的不确定性。此外,在暂态稳定风险评估过程中迫切需要考虑断路器故障和恶劣天气的影响。大多数暂态稳定风险研究假设断路器在故障检测时总是跳闸;但在实际操作中,断路器也可能由于内部故障而不动。因此,本文提出了一个考虑断路器故障和恶劣天气因素的暂态稳定风险评估框架。它考虑了以风暴形式出现的恶劣天气的影响。脆弱性曲线的概念被用来模拟这种影响。使用IEEE 14总线和IEEE 39总线测试系统测试和验证了所提方法的有效性。利用DIgSILENT PowerFactory进行暂态稳定风险评估的时域模拟。结果表明,在暂态稳定风险评估过程中,考虑断路器失效和恶劣天气是至关重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient stability risk assessment framework incorporating circuit breaker failure and severe weather
ABSTRACT Due to the rising uncertainties in the power system and the need to develop a competitive electricity market, the risk of transient stability is an important issue to address. The traditional deterministic methods of transient stability assessment fail to consider the uncertain nature of input variables. Moreover, there is a dire requirement to incorporate the impact of circuit breaker failure and severe weather in the transient stability risk assessment procedure. Majority of transient stability risk research assumes that the circuit breaker will always trip upon fault detection; however, in practice, the circuit breaker may not operate due to internal fault. Thus, this paper proposes a transient stability risk assessment framework,incorporating circuit breaker failure and severe weather. It considers the impact of severe weather, in the form of wind storms. The concept of fragility curves is used to model this impact. The IEEE 14-bus and the IEEE 39-bus test systems were used to test and validate the effectiveness of the proposed approach. DIgSILENT PowerFactory was utilised for time-domain simulations for transient stability risk evaluation. The results show that it is vital to consider the circuit breaker failure and severe weather in the transient stability risk assessment procedure.
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来源期刊
Australian Journal of Electrical and Electronics Engineering
Australian Journal of Electrical and Electronics Engineering Engineering-Electrical and Electronic Engineering
CiteScore
2.30
自引率
0.00%
发文量
46
期刊介绍: Engineers Australia journal and conference papers.
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