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首页> 外文期刊>Sensors >A Fiber Optic PD Sensor Using a Balanced Sagnac Interferometer and an EDFA-Based DOP Tunable Fiber Ring Laser
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A Fiber Optic PD Sensor Using a Balanced Sagnac Interferometer and an EDFA-Based DOP Tunable Fiber Ring Laser

机译:使用平衡Sagnac干涉仪和基于EDFA的DOP可调光纤环形激光器的光纤PD传感器

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摘要

A novel fiber-optic acoustic sensor using an erbium-doped fiber amplifier (EDFA)-based fiber ring laser and a balanced Sagnac interferometer for acoustic sensing of the partial discharge (PD) in power transformers is proposed and demonstrated. As a technical background, an experimental investigation on how the variations of the fiber birefringence affect the sensor performances was carried out, and the results are discussed. The operation principles are described, and the relevant formulas are derived. The analytical results show that an EDFA-based fiber ring laser operating in chaotic mode can provide a degree of polarization (DOP) tunable light beam for effectively suppressing polarization fading noises. The balanced Sagnac interferometer can eliminate command intensity noises and enhance the signal-to-noise ratio (SNR). Furthermore, it inherently operates at the quadrature point of the response curve without any active stabilizations. Several experiments are conducted for evaluating the performances of the sensor system, as well as for investigating the ability of the detection of high-frequency acoustic emission signals. The experimental results demonstrate that the DOP of the laser beam can be continuously tuned from 0.2% to 100%, and the power fluctuation in the whole DOP tuning range is less than 0.05 dBm. A high-frequency response up to 300 kHz is reached, and the high sensing sensitivity for detections of weak corona discharges, as well as partial discharges also is verified.
机译:提出并论证了一种新颖的光纤声传感器,该传感器使用基于掺FA光纤放大器(EDFA)的光纤环形激光器和平衡Sagnac干涉仪来对电力变压器的局部放电(PD)进行声感测。作为技术背景,对光纤双折射的变化如何影响传感器性能进行了实验研究,并对结果进行了讨论。描述了其工作原理,并推导了相关公式。分析结果表明,以混沌模式工作的基于EDFA的光纤环形激光器可提供一定程度的偏振(DOP)可调光束,以有效地抑制偏振衰落噪声。平衡的Sagnac干涉仪可以消除指令强度噪声并提高信噪比(SNR)。此外,它固有地在响应曲线的正交点上工作,而没有任何有效的稳定作用。进行了一些实验,以评估传感器系统的性能,以及研究检测高频声发射信号的能力。实验结果表明,激光束的DOP可以从0.2%连续调谐到100%,并且整个DOP调谐范围内的功率波动均小于0.05 dBm。达到了高达300 kHz的高频响应,并且还验证了用于检测弱电晕放电以及局部放电的高检测灵敏度。

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