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Distributed Brillouin sensor system based on offset locking of two distributed feedback lasersle

机译:基于两个分布式反馈激光偏移补偿的分布式布里渊传感器系统

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摘要

An offset locking technique, which uses an external optical delay line to tune the distributed feedback (DFB) laser frequency and a proportional-integral-derivative (PID) controller to lock the tuned frequency, is proposed for the first time, to the best of our knowledge, in the distributed Brillouin sensor system. This method provides large tuning range (greater than 1 GHz), high tuning speed (less than 100 lis per frequency step), and frequency tuning is independent of the laser frequency and power. The two DFB lasers are phase locked at the Brillouin frequency using a hardware PID controller. Using this offset locking with optical delay line, we demonstrated a high signal-to-noise ratio of 32 dB, which allows 1 m spatial resolution and better than 0.6 MHz frequency measurement accuracy (equivalent to 0.5 degrees C temperature resolution or 8 mu epsilon strain resolution) over kilometers sensing length. The bias of the electro-optic modulator is controlled by a lock-in amplifier to provide high temperature or strain measurement accuracy. (c) 2008 Optical Society of America.
机译:首次提出了一种偏移锁定技术,该技术使用外部光学延迟线来调谐分布式反馈(DFB)激光频率,并使用比例积分微分(PID)控制器来锁定调谐频率,这是首次提出。我们的知识,在分布式布里渊传感器系统中。该方法可提供较大的调谐范围(大于1 GHz),较高的调谐速度(每个频率步长小于100 lis),并且频率调谐与激光频率和功率无关。使用硬件PID控制器将两个DFB激光器锁相在布里渊频率上。使用带有光学延迟线的偏移锁定,我们证明了32 dB的高信噪比,可实现1 m的空间分辨率和优于0.6 MHz的频率测量精度(相当于0.5摄氏度的温度分辨率或8微米的ε应变)分辨率)超过千米。电光调制器的偏置由锁相放大器控制,以提供高温或应变测量精度。 (c)2008年美国眼镜学会。

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