Feasibility study of a non-contact AC voltage measurement system

S. ShenilP., Arjun Raveendranath, B. George
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引用次数: 20

Abstract

An instrumentation scheme suitable for non-contact measurement of ac voltage of an insulated conductor is presented in this paper. The ac voltage of an insulated conductor can be measured by using a suitable probe that forms a capacitive network between the conductor and the ground. Basic idea of such a scheme employing online measurement of the capacitances and then using it for the computation of the unknown voltage has been reported earlier. We conducted a feasibility of the scheme, and found that its output suffers from effect of various parasitic parameters of the measurement circuit and the sensor. In the study, a detailed analysis of the effect of various circuit and parasitic parameters has been conducted and the same is presented in the paper. Based on the inference from the analysis, criteria for the design of the sensor electrodes and other circuit components have been accomplished and presented. The paper also discusses a simple calibration method to reduce the effect of certain parasitic parameters and hence increase the accuracy of the measurement. Moreover a FFT based processing of the measured data has been used in the presented scheme, instead of the complex methods, including analog multiplication, division, etc. employed in the earlier reported scheme. A prototype of the non-contact ac voltage measurement system has been developed and tested in the laboratory for various frequencies and voltages. Worst-case error noticed in the tests conducted was less than 0.75 %.
一种非接触交流电压测量系统的可行性研究
本文提出了一种适用于绝缘导体交流电压非接触测量的仪器方案。绝缘导体的交流电压可以用合适的探头测量,该探头在导体和地之间形成电容网络。这种方案的基本思想是采用在线测量电容,然后将其用于未知电压的计算,这在以前已经报道过。我们对该方案进行了可行性分析,发现其输出受到测量电路和传感器各种寄生参数的影响。在研究中,详细分析了各种电路和寄生参数的影响,并给出了相应的结果。根据分析得出的结论,完成并提出了传感器电极和其他电路元件的设计准则。本文还讨论了一种简单的校准方法,以减少某些寄生参数的影响,从而提高测量精度。此外,该方案采用了基于FFT的测量数据处理方法,而不是之前报道的方案中使用的复杂方法,包括模拟乘法、除法等。非接触式交流电压测量系统的原型已经开发出来,并在实验室测试了各种频率和电压。试验中发现的最坏情况误差小于0.75%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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