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Fast evaluation methods of ATC with thermal constraints and voltage stability constraints

机译:具有热约束和电压稳定性约束的ATC快速评估方法

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This paper proposes two fast calculation methods of available transfer capacity (ATC). These two methods evaluate ATC with thermal constraints (thermal ATC) and ATC with voltage stability constraints (voltage ATC) respectively. The proposed method of thermal ATC assessment utilizes 'compensation theorem' and 'principle of superposition' and it doesn't require the power flow calculations for each (n-1) contingency. In the voltage ATC evaluation, a composite index concerning voltage stability is proposed and the severest faults are effectively identified by a contingency screening method. Moreover, voltage simulation techniques are also applied to take into account the VQC control effect. Numerical examples using model power systems including a large-scale power system show that the proposed methods can make ATC calculation considering thermal and voltage stability limits much faster than the conventional one. The proposed method considering the voltage stability constraints can evaluate ATCs in just a couple of seconds, even if it is applied to a large-scale power system.
机译:本文提出了两种快速计算可用传输容量(ATC)的方法。这两种方法分别评估具有热约束的ATC(热ATC)和具有电压稳定性约束的ATC(电压ATC)。拟议的ATC热评估方法利用了“补偿定理”和“叠加原理”,并且不需要为每个(n-1)偶然性进行潮流计算。在电压ATC评估中,提出了与电压稳定性有关的综合指标,并通过应急筛选方法有效地识别了最严重的故障。此外,电压模拟技术也被应用来考虑VQC控制效果。使用包括大型电力系统的模型电力系统的数值示例表明,所提出的方法可以在考虑热和电压稳定性极限的情况下进行ATC计算,比传统方法要快得多。所提出的考虑电压稳定性约束的方法,即使将其应用于大型电力系统,也可以在短短几秒钟内评估ATC。

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