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Design and optimization of a low frequency electric field sensor using Pockels effect

机译:利用普克尔斯效应设计和优化低频电场传感器

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The present paper proposes an optical device for measuring low frequency (50-60 Hz) high electric fields (0-200 kV.cm/sup -1/) using a LiNbO/sub 3/ crystal as sensing medium without any contacting electrode. Thus a good galvanic insulation of material and person is obtained. An experimental set-up is developed in the laboratory by using the electrooptical effect or Pockels effect and several measurements are realized. Simulations are performed with Finite Element Method to optimize the sensing medium of the device. Experimental and simulation results are presented and discussed. The sensor induces a weak disturbance of the local electric field to be measured. A good linearity and reproducibility are obtained, the sensibility of the sensor being about 3 /spl mu/A/(kV.cm/sup -1/).
机译:本文提出了一种光学装置,该装置使用LiNbO / sub 3 /晶体作为感测介质,无需任何接触电极,即可测量低频(50-60 Hz)高电场(0-200 kV.cm/sup -1 /)。因此,获得了材料和人的良好的电绝缘。通过使用电光效应或普克尔斯效应在实验室中开发了一个实验装置,并实现了几种测量。使用有限元方法进行仿真以优化设备的感测介质。给出并讨论了实验和仿真结果。传感器对要测量的局部电场产生微弱的干扰。获得了良好的线性和可重复性,传感器的灵敏度约为3 / spl mu / A /(kV.cm/sup -1 /)。

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