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Reliability evaluation of power system with large-scale wind farm integration using first-order reliability method

机译:基于一阶可靠性方法的大规模风电场集成电力系统可靠性评估

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摘要

With the fast development of wind power, the reliability of power systems becomes more difficult to be evaluated. Grid operators are lacking tools for day-ahead decision making in presence of a high penetration of uncertain generation. Short-term power system reliability evaluation using Monte Carlo Simulation (MCS) is not feasible due to its high computation cost. This study proposes to use the First-Order Reliability Method (FORM), coupled with the law of total probability, for short-term reliability assessment of power systems with large amount of wind power. This method is much faster than the MCS and allows us to evaluate the probability of load shedding due to many causes: lack of production, voltage constraints, line congestion, etc. A reliability assessment is implemented on a medium-voltage regional network using day-ahead forecasts. Using the proposed method, the reliability assessment of the power system is done with the same accuracy and with a computing time greatly reduced. Test results of the proposed method are compared with those obtained from the MCS.
机译:随着风力发电的快速发展,电力系统的可靠性变得越来越难以评估。在存在大量不确定性因素的情况下,电网运营商缺乏进行日常决策的工具。由于计算成本高,使用蒙特卡洛模拟(MCS)进行短期电力系统可靠性评估是不可行的。本研究建议使用一阶可靠性方法(FORM)结合总概率定律,对具有大量风电的电力系统进行短期可靠性评估。这种方法比MCS快得多,并且使我们能够评估由于多种原因而导致的负载减少的可能性:生产不足,电压约束,线路拥塞等。使用日间电压对中压区域网络进行可靠性评估。提前预报。使用所提出的方法,可以以相同的精度完成电力系统的可靠性评估,并大大减少了计算时间。将该方法的测试结果与从MCS获得的结果进行了比较。

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