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The sparsity of the response of a quasi-distributed fiber optic sensing system allows 'overclocking' its interrogation

机译:准分布式光纤传感系统的响应的稀疏性允许“超频”其讯问

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The response of a quasi-distributed fiber optic sensing system to a short interrogation pulse can be considered as a sparse signal in the time domain. This attribute can be exploited to enhance its performance beyond the commonly accepted limits. The work described here is analogous to some compressed sensing systems, which can be adequately sampled at sub-Nyquist rates, based on knowledge of their sparsity in the spectral domain. Equivalently, it is shown here how the sparsity of the impulse-response of a Quasi-Distributed Acoustic Sensing (Q-DAS) system can be exploited to interrogate it at rates well above the limit dictated by the total duration of its impulse response. An additional improvement in performance is achieved by using a Perfect Periodic Auto-correlation (PPA) code, rather than a pulse, for interrogation of the system. Cross-correlating the raw response of the Q-DAS system with the original code retains the sparsity of the response and provides significant gain in SNR without losing spatial resolution. Experimentally, the method was utilized to implement a 76 km long acoustic sensing system and successfully detected 250 kHz ultrasound signal. This was achieved by interrogating the system at a rate of 971 kHz which is 737 times the inherent limit dictated by the duration of the impulse-response of the system.
机译:将准分布光纤感测系统与短询问脉冲的响应可以被认为是时域中的稀疏信号。可以利用此属性来提高其超出常见限制的性能。这里描述的工作类似于一些压缩传感系统,其可以基于它们在光谱域中的稀疏性的知识以子奈奎斯特率充分采样。同等地,这里示出了可以利用准分布声学传感(Q-DAS)系统的脉冲响应的稀疏性如何利用速度远高于其脉冲响应的总持续时间来询问它的速率。通过使用完美的周期性自动相关(PPA)代码而不是脉冲来实现性能的额外改进,以便询问系统。与原始代码的Q-DAS系统的原始响应互连保留了响应的稀疏性,并在不失空间分辨率的情况下提供了显着的增益。通过实验,利用该方法实现76公里长的声学传感系统,并成功地检测到250 kHz超声信号。这是通过以971 kHz的速度询问系统来实现的,这是由系统的脉冲响应持续时间决定的固有限制的737倍。

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