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The Electronic Capacitive Voltage Transformers Error Characteristics Research and Parameter Optimization Design

机译:电子电容电压互感器误差特性研究和参数优化设计

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摘要

The mathematical model of Electronic Capacitive Voltage Transformers (ECVT) in the power system is built by analyzing the sensing principles and applied environment of the ECVT, and point out that the existence of the distribution stay capacity is the key factor effecting to the transformer accuracy. From the viewpoint of the equivalent circuit, the interaction mechanism of the ECVT measuring error caused by stray capacity and the interphase interference is quantitatively analyzed. The structure finite element calculation model of the condenser divider of ECVT in 220KV power system is built using the finite element software. The distribution stray capacitance matrix for the voltage divider is measured by simulating its static electric field. The parameters of the condenser divider are optimized by using the ECVT mathematical models established. The experiment results show that the measuring accuracy of ECVT is within 0.2 levels with the nominal capacitance of the condenser divider more than 3500pF. This paper provide reference basis for error analyzing and parameters optimization design of ECVT.
机译:通过分析ECVT的传感原则和应用环境,构建了电力系统中的电子电容电压变压器(ECVT)的数学模型,并指出分配保持能力的存在是对变压器精度的关键因素。从等效电路的观点来看,定量地分析了由杂散容量和差间干扰引起的ECVT测量误差的相互作用机制。 220kV电力系统中ECVT电容分压器的结构有限元计算模型采用有限元软件建立。通过模拟其静电场来测量用于分压器的分布杂散电容矩阵。通过使用建立的ECVT数学模型优化了冷凝器分频器的参数。实验结果表明,ECVT的测量精度在0.2级内,电容器分压器的标称电容超过3500pF。本文为ECVT的误差分析和参数优化设计提供了参考。

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