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Random-access distributed fiber sensing
DOI:10.1002/lpor.201200013.png)
摘要
En 中文
Optical sensing offers an attractive solution to the societal concern for prevention of natural and human-generated threats and for efficient use of natural resources. The unprecedented properties of optical fibers make them ideal for implementing a nervous system in structural health monitoring: they are small, low-cost and electrically and chemically inert. In particular, the nonlinear interaction of stimulated Brillouin scattering allows for the distributed measurement of strain and temperature with tens of km range. In this work, a novel, radar-inspired technique for random-access Brillouin scattering-based sensors is shown, making a significant step towards a real optical sensing nerve. The method selectively addresses each fiber segment as a distinct sensing element in a synaptic neuronal system. The measurement principle relies on phase-coding of both the Brillouin pump and signal waves by a high-rate, pseudo-random bit sequence. Temperature measurements with 1 cm resolution are reported. The measurement range is scalable to several km.
Keyword:
Fiber-optic sensing
stimulated Brillouin scattering
all-optical signal processing
distributed measurements
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10
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3.7K
被引数:
2.1W
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引用论文
Transient response in high-resolution Brillouin-based distributed sensing using probe pulses shorter than the acoustic relaxation time
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