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Long-range static and dynamic distributed sensing

机译:远程静态和动态分布式传感

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In the past few decades, Brillouin-based distributed temperature and strain sensors have attracted the attention of both the academic and industrial sectors. In particular, B-OTDA systems have been lately a trendy study area due to their numerous and well proofed applications, such as in monitoring large civil structures, energy transportation or environmental applications. One of the main areas of research in B-OTDA sensors focuses on the extension of the measuring range. To do so, it becomes necessary to increase the signal to noise ratio (SNR) of the sensor, in particular considering the reduced signal contrast at the far end of the fiber. Several techniques have been applied in order to achieve this goal, such as Raman amplification and pulse coding. Here, we review some of these techniques (particularly Raman amplification) and their application for range extension of these sensors beyond the 100 km range. In addition, we discuss routes to perform dynamic measurements over such ultra-long spans.
机译:在过去的几十年中,基于布里渊的分布式温度和应变传感器引起了学术界和工业界的关注。尤其是,B-OTDA系统由于其众多且经过充分验证的应用(例如在监视大型土木结构,能源运输或环境应用中)而成为最近的流行研究领域。 B-OTDA传感器的主要研究领域之一是扩大测量范围。为此,必须增加传感器的信噪比(SNR),尤其是考虑到光纤远端的信号对比度降低时。为了达到这个目的,已经应用了几种技术,例如拉曼放大和脉冲编码。在这里,我们回顾了其中的一些技术(尤其是拉曼放大)及其在这些传感器超过100 km的范围扩展中的应用。此外,我们讨论了在这种超长跨度上执行动态测量的路线。

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