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首页> 外文期刊>IEE proceedings. Part C, Generation, Transmission, and Distribution >Impact of utilising sequential and nonsequential simulation techniques in bulk-electric-system reliability assessment
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Impact of utilising sequential and nonsequential simulation techniques in bulk-electric-system reliability assessment

机译:利用顺序和非顺序仿真技术对大电网可靠性评估的影响

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摘要

The paper illustrates the impact of using two fundamentally different Monte Carlo simulation techniques to predict interruption-frequency indexes of bulk electric power systems. The two Monte Carlo simulation techniques designated as the sequential (state-duration sampling) and nonsequential (state sampling) methods are utilised. Two test systems designated as the Roy Billinton test system (RBTS) and the IEEE-reliability test system (IEEE-RTS) are used, and the results with respect to annualised and annual reliability indexes obtained using both techniques are demonstrated. The impacts of failure state transitions and chronology on frequency-index calculations are investigated and discussed. The results show that the approximate frequency index obtained using the nonsequential technique could provide either a high estimate or a low estimate of the more accurate frequency indexes obtained using the sequential technique, depending on the factors included in the calculation.
机译:本文说明了使用两种根本不同的蒙特卡洛模拟技术来预测大功率电力系统的中断频率指标的影响。使用了两种指定为顺序(状态持续时间采样)和非顺序(状态采样)方法的蒙特卡洛模拟技术。使用了两个指定为Roy Billinton测试系统(RBTS)和IEEE可靠性测试系统(IEEE-RTS)的测试系统,并论证了使用这两种技术获得的年度和年度可靠性指标的结果。研究并讨论了故障状态转变和时间顺序对频率指数计算的影响。结果表明,根据计算中所包含的因素,使用非序列技术获得的近似频率指数可以为使用序列技术获得的更准确的频率指数提供高估还是低估。

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