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Applying a wide-area measurement system to validate the dynamic model of a part of European power system

机译:应用广域测量系统来验证欧洲电力系统一部分的动态模型

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In this paper a validation of dynamic model of a Slovenian power system using WAMS is presented. For this purpose a dynamic model of a part of the ENTSO-E system was constructed by applying two professional dynamic-simulation software tools that use different approaches to obtain mathematical solutions for the model to solve the problem. The simulation results were compared with each other as well as with the measurements gathered by the WAMS. Namely, Slovenia has almost full coverage of PMU measurements at the high-voltage level (220- and 400-kV) buses. This fact has been used to adapt the model, especially for the representation of the rest of the ENTSO-E network, as well as for the validation of the results and explaining the physical background for the existing differences. WAMS measurements for several different events occurring during 2010 and 2011 were used to adapt the model, which then exhibits a good match in all situations recorded by the WAMS. The physical background for the resulting deviations is presented. However, it should be pointed out that, after the model was finalized, for all the validated cases the system element parameters remained unchanged. Of course, depending on the simulated case, the initial steady-state conditions were set according to the measurements.
机译:本文提出了使用WAMS验证斯洛文尼亚电力系统动态模型的方法。为此,通过应用两个专业的动态模拟软件工具,构建了ENTSO-E系统一部分的动态模型,该工具使用不同的方法来获得模型的数学解来解决问题。相互比较了模拟结果以及WAMS收集的测量结果。即,斯洛文尼亚在高压等级(220和400kV)总线上几乎完全覆盖了PMU测量。这个事实已用于调整模型,尤其是用于表示ENTSO-E网络其余部分,以及用于验证结果和解释现有差异的物理背景。使用WAMS对2010年和2011年期间发生的几种不同事件的测量值进行调整,以适应该模型,然后在WAMS记录的所有情况下都显示出良好的匹配性。给出了导致偏差的物理背景。但是,应该指出的是,在模型完成后,对于所有经过验证的情况,系统元素参数均保持不变。当然,根据模拟情况,根据测量值设置初始稳态条件。

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