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Modified in-line Sagnac interferometer with passive demodulation technique for environmental immunity of a fiber-optic current sensor

机译:带有无源解调技术的改进型在线Sagnac干涉仪,用于光纤电流传感器的环境抗扰性

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摘要

A modified in-line Sagnac interferometer (MISI) with passive demodulation Technique (PDT) was proposed to immunize the fiber-optic current sensor (FOCS) from environmental perturbations. A large vibration to simulate the environmental perturbations with acceleration up to 12 g was applied to the lead fiber of the FOCS. The noise floor could be significantly suppressed (20 dB) by the MISI better than by a conventional interferometer. In the same dynamic environments, the PDT could make the FOCS achieve a good linear demodulation with average distortion rates always lower than 0.9%. In addition, all the sensitivities measured in both static and dynamic environments are all approximately 4.5 μrad/ (A_(rms) turns), which is close to the literatural data measured in static environments. These considerable achievements of high sensitivity, environmental immunity, and free electric shock concerns may lead FOCS's to field-monitoring applications of power delivery lines.
机译:提出了一种采用无源解调技术(PDT)的改进的在线Sagnac干涉仪(MISI),以使光纤电流传感器(FOCS)免受环境干扰。在FOCS的前导纤维上施加了很大的振动以模拟环境扰动,加速度高达12 g。 MISI可以比常规干涉仪更好地抑制本底噪声(20 dB)。在相同的动态环境中,PDT可以使FOCS实现良好的线性解调,并且平均失真率始终低于0.9%。此外,在静态和动态环境下测得的所有灵敏度均为约4.5μrad/(A_(rms)匝),接近在静态环境下测得的文学数据。高灵敏度,环境抗扰性和无电击问题的这些可观成就可能会导致FOCS进入输电线路的现场监控应用。

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