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AC/DC Fields Demodulation Methods of Resonant Electric Field Microsensor

机译:AC / DC场谐振电场微传感器的解调方法

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摘要

Electric field microsensors have the advantages of a small size, a low power consumption, of avoiding wear, and of measuring both direct-current (DC) and alternating-current (AC) fields, which are especially suited to applications in power systems. However, previous reports were chiefly concerned with proposing new structures or improving the resolution, and there are no systematic studies on the signal characteristics of the microsensor output and the demodulation methods under different electric fields. In this paper, the use of an improved resonant microsensor with coplanar electrodes, and the signal characteristics under a DC field, power frequency field, and AC/DC hybrid fields were thoroughly analyzed respectively, and matching demodulation methods derived from synchronous detection were proposed. We theoretically obtained that the frequencies of the detectable electric fields should be less than half of the resonant frequency of the microsensor, and that the sensitivities of the microsensor were identical for AC/DC hybrid fields with different frequencies. Experiments were conducted to verify the proposed demodulation methods. Within electric field ranges of 0–667 kV/m, the uncertainties were 2.4% and 1.5% for the most common DC and 50 Hz power frequency fields, respectively. The frequency characteristic test results of the microsensor were in agreement with those of the theoretical analysis in the range of 0–1 kHz.
机译:电场微传感器具有小尺寸,低功率消耗,避免磨损的优点,并同时测量直流(DC)和交流(AC)场,其特别适合于在电力系统中应用的。然而,以前的报告中主要关心的是提出新的结构或提高分辨率,有在微传感器输出的信号特征,并根据不同的电场解调方法没有系统的研究。在本文中,使用具有共面的电极的改进的谐振微传感器的,并且在DC场的信号特性,工频字段,和AC / DC混合型字段彻底分别分析,并提出从同步检测而得到的匹配解调方法。我们获得理论上可检测电场的频率应当小于所述微传感器的谐振频率的一半,并且该微传感器的灵敏度分别为具有不同频率的AC / DC混合型字段是相同的。进行实验验证了该解调方法。内的0-667千伏/ m的电场的范围,不确定性分别为2.4%和分别最常见的DC和50Hz电源频率字段,1.5%。微传感器的频率特性的测试结果与那些0-1千赫范围内的理论分析的协议。

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