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DEVELOPMENT OF OPTICAL FIBER HARMONIC CURRENT SENSOR

机译:光纤谐波电流传感器的开发

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摘要

Since the high response and accurate characteristics of fiber sensing on the physical properties, an accurate measurement of harmonic current using an optical fiber current sensor is presented in this paper. Subject to the magnetic/optic effect the optical fiber current sensor is based on the Faraday effect of borosilicate crow glass for harmonic current measurement. By the configuration of the measuring system of light source, optical fiber, micro lens, polarizer, Faraday rotator and coil as well as the analyzer and detector. The magnetic effect fluctuation induced by current variation based on the magnetic/optic properties of Faraday rotator is thus applied successfully. Current measuring performance dependence is reported, a proper temperature compensation is needed, that an optical fiber temperature sensor will be developed for measuring system calibration. The experiment results are presented to guarantee the accurate of the sensor and it is suitable for harmonic current monitoring system, which implied a high speed response without distortion.
机译:由于光纤传感对物理性能的高响应和精确特性,因此本文提出了使用光纤电流传感器对谐波电流的精确测量。受到磁/光效应的影响,光纤电流传感器基于硼硅酸盐乌鸦玻璃的法拉第效应,用于谐波电流测量。通过光源,光纤,微透镜,偏振器,法拉第旋转器和线圈以及分析仪和检测器的测量系统的配置。因此,成功地应用了基于法拉第转子的磁/光特性的电流变化引起的磁效应波动。据报道当前的测量性能依赖,需要适当的温度补偿,因此将开发光纤温度传感器用于测量系统校准。实验结果表明,该传感器可以保证传感器的精度,适用于谐波电流监测系统,意味着高速响应而不会失真。

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