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基于泵浦脉冲布里渊分布式放大辅助的布里渊光时域分析传感器

Brillouin optical time-domain analysis sensor assisted by Brillouin distributed amplification of pump pulses.

作者信息

Urricelqui Javier, Sagues Mikel, Loayssa Alayn

出版信息

Opt Express. 2015 Nov 16;23(23):30448-58. doi: 10.1364/OE.23.030448.

Abstract

We demonstrate the extension of the measurement range of Brillouin optical time-domain analysis (BOTDA) sensors using a distributed Brillouin amplifier (DBA). The technique is based on injecting a DBA pump wave in the fiber to generate an additional Brillouin interaction that amplifies the BOTDA pump pulses and compensates optical fiber attenuation. This amplification does not introduce any significant noise to the BOTDA's probe wave due to the inherent directionality of the Brillouin gain. Additionally, we deploy a differential pulse-width pair measurement method to avoid measurement errors due to the interplay between the self-phase modulation effect and the changes in the temporal shape of the pulses induced by the transient behavior of Brillouin gain. Experimental proof-of-concept results in a 50-km fiber link demonstrate full compensation of the fiber's attenuation with no penalty on the signal-to-noise ratio of the detected signal.

摘要

我们展示了利用分布式布里渊放大器(DBA)扩展布里渊光时域分析(BOTDA)传感器的测量范围。该技术基于在光纤中注入DBA泵浦波,以产生额外的布里渊相互作用,放大BOTDA泵浦脉冲并补偿光纤衰减。由于布里渊增益的固有方向性,这种放大不会给BOTDA的探测波引入任何显著噪声。此外,我们采用差分脉冲宽度对测量方法,以避免由于自相位调制效应与布里渊增益瞬态行为引起的脉冲时间形状变化之间的相互作用而导致的测量误差。在50公里光纤链路中的实验概念验证结果表明,光纤衰减得到了完全补偿,而检测信号的信噪比没有损失。

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