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首页> 外文期刊>IEE proceedings. Part C >FaSt computation of post-contingency system margins for voItage stability assessments of large-scale power systems
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FaSt computation of post-contingency system margins for voItage stability assessments of large-scale power systems

机译:应急系统后余量的FaSt计算,用于大型电力系统的电压稳定性评估

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摘要

A technique to compute the post-contingency system margins for voltage stability assessment is presented. The voltage collapse point of the system base case is first computed using a traditional PV curve method. When a contingency is applied to this fully stressed base case, loads must be shed in order to maintain voltage stability. The key idea of the proposed method is to determine the right amount of load shedding that leaves the post-contingency system at its nose point. The system margin is equal to the base case margin minus the. load shedding amount. The amount of load to shed is computed by a modified power flow method, where the amount of loading shedding is parameterised by an additional unknown variable. The technique has been tested on a large-scale power system with l725 buses. The results show that the proposed approach is very efficient for voltage stability assessment when a large number of contingencies are involved.
机译:提出了一种计算应急后系统裕度以进行电压稳定性评估的技术。首先使用传统的PV曲线方法计算系统基本情况的电压崩溃点。当对这种完全受压的基本情况施加应变时,必须减轻负载以保持电压稳定性。提出的方法的关键思想是确定使事后应急系统处于机头的正确的减载量。系统保证金等于基本情况保证金减去。减载量。通过修改的潮流方法计算要减少的负载量,其中通过其他未知变量对减载量进行参数设置。该技术已在带有l725总线的大型电力系统上进行了测试。结果表明,当涉及大量突发事件时,该方法对于电压稳定性评估非常有效。

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