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High accuracy optical voltage transformer with digital output based on coaxial capacitor voltage divider

机译:基于同轴电电容器分压器的数字输出高精度光学电压互感器

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摘要

The voltage transformer based on capacitor divider is susceptible to stray capacitance and Bi4Ge3O12 crystal is sensitive to temperature, which leads to the decrease of measurement precision. To solve these questions, a kind of temperature self-healing optical voltage transformer based on the coaxial capacitor is proposed in this paper. By using coaxial capacitor divider structure instead of the traditional capacitor divider structure, and using a reference light path to achieve the function of temperature self-healing, the measurement accuracy of the optical voltage transformer can be improved. The theoretical analysis, modeling and simulation of several key technologies of coaxial capacitance are presented. Simulation and experimental results show that the temperature self-healing optical voltage transformer based on coaxial capacitor structure meets the requirements of the 0.2 class accuracies.
机译:基于电容器分频器的电压互感器易于杂散电容,Bi4Ge3O12晶体对温度敏感,这导致测量精度降低。 为了解决这些问题,本文提出了一种基于同轴电电容器的温度自愈光学电压变压器。 通过使用同轴电容器分压器结构而不是传统的电容器分压器结构,并且使用参考光路实现温度自愈合的功能,可以提高光学电压变压器的测量精度。 呈现了同轴电容若干关键技术的理论分析,建模和仿真。 仿真和实验结果表明,基于同轴电容器结构的温度自愈光学电压变压器满足0.2级精度的要求。

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