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Study and Experiment on Non-Contact Voltage Sensor Suitable for Three-Phase Transmission Line

机译:适用于三相输电线路的非接触式电压传感器的研究与实验

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A voltage transformer, as voltage signal detection equipment, plays an important role in a power system. Presently, more and more electric power systems are adopting potential transformer and capacitance voltage transformers. Transformers are often large in volume and heavyweight, their insulation design is difficult, and an iron core or multi-grade capacitance voltage division structure is generally adopted. As a result, the detection accuracy of transformer is reduced, a huge phase difference exists between detection signal and voltage signal to be measured, and the detection signal cannot accurately and timely reflect the change of conductor voltage signal to be measured. By aiming at the current problems of electric transformation, based on electrostatic induction principle, this paper designed a non-contact voltage sensor and gained detection signal of the sensor through electrostatic coupling for the electric field generated by electric charges of the conductor to be measured. The insulation structure design of the sensor is simple and its volume is small; phase difference of sensor measurement is effectively reduced through optimization design of the electrode; and voltage division ratio and measurement accuracy are increased. The voltage sensor was tested on the experimental platform of simulating three-phase transmission line. According to the result, the designed non-contact voltage sensor can realize accurate and real-time measurement for the conductor voltage. It can be applied to online monitoring for the voltage of three-phase transmission line or three-phase distribution network line, which is in accordance with the development direction of the smart grid.
机译:电压互感器作为电压信号检测设备,在电力系统中起着重要的作用。当前,越来越多的电力系统采用电势变压器和电容电压互感器。变压器通常体积大,重量大,其绝缘设计困难,通常采用铁芯或多级电容分压结构。结果,降低了变压器的检测精度,在检测信号和要测量的电压信号之间存在巨大的相位差,并且该检测信号不能准确及时地反映要测量的导体电压信号的变化。针对目前的电变换问题,基于静电感应原理,设计了一种非接触电压传感器,并通过静电耦合获得了待测导体电荷产生的电场,从而获得了传感器的检测信号。传感器的绝缘结构设计简单,体积小;通过电极的优化设计有效减少了传感器测量的相位差;分压比和测量精度提高。在模拟三相传输线的实验平台上对电压传感器进行了测试。根据结果​​,设计的非接触电压传感器可以实现对导体电压的实时准确测量。根据智能电网的发展方向,可以将其应用于三相输电线路或三相配电网线路的电压在线监测。

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