Yao Cheng-Kai, Peng Chun-Hsiang, Chen Hung-Ming, Hsu Wen-Yang, Lin Tzu-Chiao, Manie Yibeltal Chanie, Peng Peng-Chun
Department of Electro-Optical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
Marine Geology and Energy Department, Industrial Technology Research Institute, Tainan 71101, Taiwan.
Sensors (Basel). 2024 Aug 15;24(16):5277. doi: 10.3390/s24165277.
Deploying distributed fiber-optic sensor (DFOS) technology to gather environmental parameters over expansive areas is an essential monitoring strategy in the context of comprehensive searches for anomalous places. This study utilizes a single temperature measurement channel within a commercial Raman-based distributed temperature sensing (RDTS) interrogator and divides it into two separate, uncorrelated paths to enable spatial duplex temperature measurements. The distinction between temperature events corresponding to each path in the dual separate path (DSP) in RDTS can be achieved when temperature events are concurrently occurring in the DSP. Additionally, the RDTS-DSP solution may integrate free space optics (FSO) into its fiber path, which serves to enhance the user-friendliness, scalability, and cost-effectiveness of DFOS technology. An RDTS measurement channel can effectively function as a DSP, thus doubling the RDTS measurement pathway, and can be combined with FSO to significantly improve RDTS performance.
在全面搜索异常区域的背景下,部署分布式光纤传感器(DFOS)技术以在广阔区域收集环境参数是一项重要的监测策略。本研究利用基于拉曼的商用分布式温度传感(RDTS)询问器中的单个温度测量通道,并将其分为两条独立、不相关的路径,以实现空间双工温度测量。当温度事件在RDTS的双独立路径(DSP)中同时发生时,可以实现DSP中每个路径对应的温度事件之间的区分。此外,RDTS-DSP解决方案可以将自由空间光学(FSO)集成到其光纤路径中,这有助于提高DFOS技术的用户友好性、可扩展性和成本效益。一个RDTS测量通道可以有效地充当DSP,从而使RDTS测量路径翻倍,并且可以与FSO结合以显著提高RDTS性能。