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Static and dynamic aspects in bulk power system reliability evaluations

机译:大容量电力系统可靠性评估中的静态和动态方面

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This work extends the concepts and evaluation techniques for composite generation and transmission reliability assessment, in order to provide performance measures considering both static (adequacy) and dynamic (security) consequences of the disturbances, which may occur in electric power systems. The assessment of dynamic aspects requires the modeling of protection systems, control actions and restoration processes. The cascading effects associated with dynamic problems are usually nonMarkovian in nature, and they are better modeled through a Monte Carlo chronological or sequential simulation. For the transient stability analysis, a method combining time simulation and transient energy function is used. The IEEE-RTS (Reliability Test System) is first extended to be analyzed bearing in mind both aspects, static and dynamic, and then used to test the proposed methodology. The usual reliability indices, e.g. LOLP, are separately calculated for measuring adequacy and security. They are also decomposed to capture the contributions of various types of failures considered; phase faults, etc.
机译:这项工作扩展了用于综合发电和输电可靠性评估的概念和评估技术,以便提供考虑电力系统中可能发生的干扰的静态(充分)和动态(安全)后果的性能指标。动态方面的评估需要对保护系统,控制措施和恢复过程进行建模。与动态问题相关的级联效应通常本质上是非马尔可夫效应,可以通过蒙特卡洛时间顺序或顺序模拟更好地建模。对于瞬态稳定性分析,使用了一种将时间模拟和瞬态能量函数相结合的方法。首先将IEEE-RTS(可靠性测试系统)扩展为同时考虑静态和动态两个方面进行分析,然后将其用于测试所提出的方法。通常的可靠性指标,例如LOLP是单独计算的,用于衡量充足性和安全性。它们也被分解以捕获所考虑的各种类型故障的原因;相位故障等

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