光纤敏感元件数字式电流测量系统

M. Urakseev, T. Levina, N. Avdonina, K. Sattarov, K. K. Zhuraeva
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引用次数: 2

摘要

目前的工作是建立一个数字系统,用于测量电流的大小,该系统使用磁光法拉第电池形式的光纤敏感元件,该元件来自具有线性双折射的保偏振光纤,该光纤卷进线圈中,其中电流导体位于线圈中。这项工作的目标是开发一种新的光电测量系统,用于测量电流,基于光纤中的法拉第磁光效应,并在其结构中包含现代数字元件。通过对国内外专利和科技文献的分析,揭示了最有前途的发展方向是采用光纤线圈形式的敏感元件的测量系统,其中测量过程基于法拉第磁光效应。这样可以获得高质量的指标,如测量可变和恒定电流的能力:误差±0.1%;样品间特征重复性±0.02%;线性度±0.1%;动态范围> 4 kHz,温度灵敏度<±0.002% /°С;敏感元件的质量不超过15kg(相比之下,类似测量范围的磁电流互感器的质量要多一个数量级)。在此基础上,决定开发一种基于光纤中法拉第磁光效应的测量系统,并使用数字光纤和电子元件对测量系统的输出信号进行处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital electric current measuring system with fiber optical sensitive element
The relevance of the present work on the creation of a digital system for measuring the magnitude of the electric current with a fiber-optic sensitive element in the form of a magneto-optical Faraday cell from a polarization-preserving optical fiber with linear birefringence rolled into a coil inside which a current conductor is located is substantiated.The goal of the work was formulated as the development of a new optoelectronic measuring system for measuring electric current, based on the Faraday magneto-optical effect in optical fiber and containing modern digital components in its structure.Based on the analysis of foreign and domestic patent and scientific and technical literature, it was revealed that the most promising direction of development is the use of a sensitive element of the measuring system in the form of a fiber optic coil, in which the measurement process is based on the Faraday magneto-optical effect. This allows to obtain high quality indicators, such as the ability to measure variable and constant currents: error ± 0.1%; repeatability of characteristics from sample to sample ± 0.02%; linearity ± 0.1%; dynamic range > 4 kHz, temperature sensitivity <± 0,002%/°С; the mass of the sensitive element does not exceed 15 kg (for comparison, the mass of magnetic current transformers of similar measurement ranges is an order of magnitude more).Based on the foregoing, it was decided to develop a measuring system based on the Faraday magneto-optical effect in optical fiber and use digital fiber-optic and electronic components to process the output signal of the measuring system.
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