High voltage measurements using slab coupled optical sensors (SCOS)

L. Shumway, N. Stan, F. Seng, Rex King, R. Selfridge, S. Schultz
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引用次数: 4

Abstract

One of the most common methods used to measure high voltage is using a voltage divider. While this method is fairly reliable for most low frequency high voltage measurements, the voltage divider encounters difficulty when measuring higher frequency voltage signals. In these instances, the signal measured by the voltage divider becomes susceptible to distortion and inaccuracy. One solution to measuring voltages where a voltage divider would not suffice is using an electrode structure in conjunction with a fiber-based electric field sensor. A high voltage generator was constructed utilizing automotive ignition coils and was used in a capacitor-charging circuit. The voltage on the capacitor was measured using a common resistive voltage divider as well as with a fiber-based electric field sensor. Where a resistor divider was not reliable in characterizing the system, the optical sensor was successful in measuring the charge and discharge voltages of the capacitor circuit.
利用平板耦合光学传感器(SCOS)进行高压测量
测量高压最常用的方法之一是使用分压器。虽然这种方法对大多数低频高压测量相当可靠,但分压器在测量高频电压信号时遇到困难。在这些情况下,由分压器测量的信号变得容易失真和不准确。在分压器无法满足测量电压的情况下,一种解决方案是将电极结构与基于光纤的电场传感器结合使用。利用汽车点火线圈构造了一种高压发电机,并将其应用于电容器充电电路。电容器上的电压使用普通的电阻分压器以及基于光纤的电场传感器进行测量。在电阻分压器不可靠的情况下,光学传感器成功地测量了电容电路的充放电电压。
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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