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Distributed fiber temperature and strain sensor using coherent radio-frequency detection of spontaneous Brillouin scattering

机译:利用相干射频检测自发布里渊散射的分布式光纤温度和应变传感器

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摘要

A novel technique that enables coherent detection of spontaneous Brillouin scattering in the radiofrequency (< 500 MHz) region with excellent long-term stability has been demonstrated for distributed measurements of temperature and strain in long fiber. An actively stabilized single-frequency Brillouin fiber laser with extremely low phase noise and intensity noise is used as a well-defined, frequency-shifted local oscillator for the heterodyne detection, yielding measurements of spontaneous Brillouin scattering with high frequency stability. Based on this approach, a highly stable real-time fiber sensor for distributed measurements of both temperature and strain over long fiber has been developed utilizing advanced digital signal processing techniques.
机译:对于长纤维温度和应变的分布式测量,已经证明了一种新技术,该技术能够以连贯的方式对射频(<500 MHz)区域中的自发布里渊散射进行检测,并且具有出色的长期稳定性。具有极低相位噪声和强度噪声的有源稳定单频布里渊光纤激光器被用作外差检测的明确定义的频移本地振荡器,从而获得具有高频率稳定性的自发布里渊散射测量。基于这种方法,利用先进的数字信号处理技术开发了一种高度稳定的实时光纤传感器,用于在长光纤上进行温度和应变的分布式测量。

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