arXiv · 1702.08253
Distributed fiber sparse-wideband vibration sensing by sub-Nyquist additive random sampling
Abstract
The round trip time of the light pulse limits the maximum detectable vibration frequency response range of phase-sensitive optical time domain reflectometry (ϕ-OTDR). Unlike the uniform laser pulse interval in conventional ϕ-OTDR, we randomly modulate the pulse interval, so that an equivalent sub-Nyquist additive random sampling (sNARS) is realized for every sensing point of the long interrogation fiber. For an ϕ-OTDR system with 10 km sensing length, the sNARS method is optimized by theoretical analysis and Monte Carlo simulation, and the experimental results verify that a wide-band spars signal can be identified and reconstructed. Such a method can broaden the vibration frequency response range of ϕ-OTDR, which is of great significance in sparse-wideband-frequency vibration signal detection, such as rail track monitoring and metal defect detection.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Jingdong Zhang, Hua Zheng, Tao Zhu, Guolu Yin, Min Liu, Yongzhong Bai, Dingrong Qu, Feng Qiu, Xianbing Huang. 2018-03-21. Distributed fiber sparse-wideband vibration sensing by sub-Nyquist additive random sampling. https://doi.org/10.1364/ol.43.002022
Cite the original work for its findings. Save a collection to share your selection of sources.