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Single-shot BOTDA based on an optical chirp chain probe wave for distributed ultrafast measurement

机译:基于光学chi链探针波的单次BOTDA用于分布式超快测量

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摘要

Brillouin optical time-domain analysis (BOTDA) requires frequency mapping of the Brillouin spectrum to obtain environmental information (e.g., temperature or strain) over the length of the sensing fiber, with the finite frequency-sweeping time-limiting applications to only static or slowly varying strain or temperature environments. To solve this problem, we propose the use of an optical chirp chain probe wave to remove the requirement of frequency sweeping for the Brillouin spectrum, which enables distributed ultrafast strain measurement with a single pump pulse. The optical chirp chain is generated using a frequency-agile technique via a fast-frequency-changing microwave, which covers a larger frequency range around the Stokes frequency relative to the pump wave, so that a distributed Brillouin gain spectrum along the fiber is realized. Dynamic strain measurements for periodic mechanical vibration, mechanical shock, and a switch event are demonstrated at sampling rates of 25 kHz, 2.5 MHz and 6.25 MHz, respectively. To the best of our knowledge, this is the first demonstration of distributed Brillouin strain sensing with a wide-dynamic range at a sampling rate of up to the MHz level.
机译:布里渊光学时域分析(BOTDA)要求对布里渊频谱进行频率映射,以在传感光纤的整个长度上获取环境信息(例如温度或应变),而有限的扫频时限应用仅适用于静态或缓慢变化的应变或温度环境。为解决此问题,我们建议使用光学线性调频链探测波来消除布里渊频谱的扫频要求,从而可以使用单个泵浦脉冲进行分布式超快速应变测量。光学线性调频链是利用频率捷变技术通过快速变频微波生成的,该微波相对于泵浦波覆盖了斯托克斯频率附近的较大频率范围,从而实现了沿光纤的布里渊增益频谱分布。分别以25,kHz,2.5 MHz和6.25 MHz的采样率演示了用于周期性机械振动,机械冲击和开关事件的动态应变测量。据我们所知,这是分布式布里渊应变传感的首次演示,该布里渊应变传感具有高达MHZ采样率的宽动态范围。

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