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Research on Arrester Interference Compensation Based on Finite Element Method

机译:基于有限元方法的避雷器干扰补偿研究

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In order to effectively compensate for the difference effect caused by the interference between phases of Metal Oxide Arresters (MOA) and reduce the misjudgment events in the actual resistive current measurement, the arrester interference compensation was studied in this paper. Firstly, a three-dimensional model of MOA was established by finite element method in this paper. Next, the potential distribution under the model was compared and analyzed, and the correctness of the model was verified. Then, based on the model, the distribution calculation of coupling capacitance was carried out, and the main capacitance of each phase and the coupling capacitance between phases were calculated. Finally, the simulation calculation models of the coupling current of the resistance valve plates in the adjacent and relative measurement phase were built respectively, and the action forms of the coupling capacitance currents of each layer were compared and analyzed, which provided the basis for eliminating the interference between phases.
机译:为了有效补偿金属氧化物避雷器(MOA)的相间干扰所引起的差异效应,并减少实际电阻电流测量中的误判事件,本文研究了避雷器干扰补偿。首先,通过有限元方法建立了MOA的三维模型。接下来,对模型下的电位分布进行了比较和分析,并验证了模型的正确性。然后,基于该模型,进行耦合电容的分布计算,计算出各相的主电容和各相之间的耦合电容。最后,分别建立了相邻测量阶段和相对测量阶段电阻阀板耦合电流的仿真计算模型,并比较分析了各层耦合电容电流的作用形式,为消除该现象提供了依据。相之间的干扰。

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