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Long-distance remote simultaneous measurement of strain and temperature based on a Raman fiber laser with a single FBG embedded in a quartz plate

机译:基于拉曼光纤激光器的远程远程同时测量应变和温度,该激光器具有嵌入在石英板上的单个FBG

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摘要

We propose and experimentally demonstrate long-distance, simultaneous measurement of strain and temperature based on a Raman fiber laser with a single FBG embedded on a quartz plate. Most of all, FBG based sensing technology has attracted considerable attention in the field of optical sensors since FBG based sensing probe can provide the most simple and attractive methods to monitor the external perturbation change like temperature, strain, and pressure due to its high sensitivity, electro-magnetic immunity, compactness, and ease of fabrication. In order to enhance the measurement resolution of sensing systems, fiber lasers based sensor schemes with narrow bandwidth and high extinction ratio have been considered as promising technologies. A novel and practical Raman laser based long-distance sensing scheme for simultaneous measurement of strain and temperature using FBGs is investigated. High-quality Raman laser output with a high extinction ratio of more than 50 dB is obtained at a long distance of over 50 km. Lasing wavelength shift and separation occur as the temperature and strain increase, respectively. To induce these phenomena, half of the FBG is fixed steadily on the quartz plate to respond to temperature only, while the other half of the FBG is free to respond to both temperature and strain. The temperature and strain sensitivities are measured to be 8.96 pm/℃ and 1.47 pm/με, respectively. This allows simultaneous measurement of strain and temperature for long-distance sensing applications of more than 50 km.
机译:我们提出并通过实验证明了基于拉曼光纤激光器的长距离,同时测量应变和温度,该激光器具有嵌入在石英板上的单个FBG。最重要的是,基于FBG的传感技术具有很高的灵敏度,因为基于FBG的传感探头可以提供最简单和有吸引力的方法来监视外部扰动变化(例如温度,应变和压力),因此在光学传感器领域引起了广泛关注,电磁抗扰性,紧凑性和易于制造性。为了提高传感系统的测量分辨率,具有窄带宽和高消光比的基于光纤激光器的传感器方案已被认为是有前途的技术。研究了一种新颖实用的基于拉曼激光的长距离传感方案,该方案可使用FBG同时测量应变和温度。在超过50 km的长距离上可获得高消光比超过50 dB的高质量拉曼激光输出。随着温度和应变的增加,激光波长发生偏移和分离。为了引起这些现象,FBG的一半稳定地固定在石英板上,仅对温度作出响应,而FBG的另一半则自由地对温度和应变做出响应。测得的温度和应变敏感性分别为8.96 pm /℃和1.47 pm /με。对于超过50 km的长距离传感应用,这允许同时测量应变和温度。

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