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Simulation Design and Test of a Dual-Differential D-Dot Overvoltage Sensor Based on the Field-Circuit Coupling Method

机译:基于场电路耦合方法的双差分D点过电压传感器的仿真设计和测试

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摘要

Accurate measurement of overvoltage in power grids is of great significance to study the characteristics of overvoltage and design of insulation coordination. Based on the research of D-dot voltage sensor, we designed a Dual-Differential D-dot overvoltage sensor. In order to quantify the structural parameters of the sensor, improve the performance and measurement accuracy of the sensor. The Field-Circuit Coupling method was proposed to be used in the parameter design of D-dot overvoltage sensor. The joint simulation of space electromagnetic field model and equivalent circuit model of the Dual-Differential D-dot overvoltage sensor was established with the finite element simulation software Ansoft Maxwell and circuit simulation software Simplorer. Finally, the actual sensor was manufactured. A test platform was built to verify the steady-state and transient performance of the sensor. The results show that the Dual-Differential D-dot sensor has excellent steady-state and transient performance, the error of phase and amplitude are small, and the sensor can achieve the non-contact measurement of power transmission line. Simultaneously, the rationality of the Field-Circuit Coupling method was further verified.
机译:准确测量电网中的过电压对研究过电压的特性和绝缘配合设计具有重要意义。在对D点电压传感器的研究基础上,设计了一种双差D点过电压传感器。为了量化传感器的结构参数,提高传感器的性能和测量精度。提出了现场电路耦合方法用于D点过电压传感器的参数设计。利用有限元仿真软件Ansoft Maxwell和电路仿真软件Simplorer,建立了双差D点超压传感器的空间电磁场模型和等效电路模型的联合仿真。最后,制造出实际的传感器。建立了一个测试平台来验证传感器的稳态和瞬态性能。结果表明,双差D点传感器具有良好的稳态和瞬态性能,相位和幅度误差小,可以实现输电线路的非接触式测量。同时,进一步验证了场电路耦合方法的合理性。

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