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Optical Electric-Power Sensor using one Bi_4Ge_3O_(12) Crystal

机译:使用一个Bi_4Ge_3O_(12)晶体的光电传感器

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摘要

An optical electric-power sensor is proposed and experimentally carried out. Only one block of bismuth germanate crystal is utilized as the sensing element, which exhibits both the Faraday effect and the Pockels effect. The polarized light passing through the crystal can be modulated by the product signal of applied electric and magnetic fields, therefore, instantaneous electric power signal can be obtained when load current and load voltage are simultaneously applied to the sensing crystal by use of an air-cored coil and two plane electrodes. The active power and apparent power within 2000W(or VA) have been measured simultaneously under different power factors. The maximum relative errors are 2.7% for active power measurement and 1.9% for apparent power measurement. The sensitivity and uncertainty of the sensing system are also discussed.
机译:提出了光功率传感器并进行了实验。仅一块锗酸铋晶体用作感测元件,其同时显示出法拉第效应和普克尔斯效应。可以通过施加的电场和磁场的乘积信号来调制通过晶体的偏振光,因此,当通过使用空芯同时向感测晶体施加负载电流和负载电压时,可以获得瞬时功率信号。线圈和两个平面电极。在不同的功率因数下,同时测量了2000W(或VA)以内的有功功率和视在功率。有功功率测量的最大相对误差为2.7%,视在功率测量的最大相对误差为1.9%。还讨论了传感系统的灵敏度和不确定性。

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