作者单位
摘要
1 天津中德应用技术大学 智能制造学院,天津 300350
2 天津理工大学 电气电子工程学院,天津 300384
光纤传感系统在复杂的实际应用中需要针对同一根光纤上的相邻的多个扰动点进行精确的识别定位。基于传感技术对外部扰动识别的背景,结合光纤传感系统的结构,得到光纤传感信号的振动和非振动区域典型曲线,提出单峰信号的误差累计值算法;在多峰信号特点的基础上,结合高斯方程及洛伦兹方程得到多峰信号的分离算法。实验结果表明:单峰信号的误差累计值算法能同时兼顾识别干扰位置准确性及系统的实时性,多峰信号的分离算法能分离2个独立的干扰信号并提取方程,该方案能有效提高信号峰重叠较多或者其它信号干扰时的识别准确率。
光纤传感信号 误差累计值算法 多峰分离算法 光时域检测技术 扰动识别 optical fiber sensing signal error accumulation algorithm multi peak separation algorithm optical time domain detection technology disturbance identification 
光通信技术
2021, 47(7): 48
Jiao Li 1†Yixin Yao 1,2,3Liwen Jiang 1,2,3Shuai Li 1[ ... ]Weili Zhang 4,*
Author Affiliations
Abstract
1 Tianjin University, School of Precision Instruments and Optoelectronics Engineering, Tianjin, China
2 Tianjin University, Center for Terahertz Waves, Tianjin, China
3 Ministry of Education, Key Laboratory of Optoelectronics Information and Technology, Tianjin, China
4 Oklahoma State University, School of Electrical and Computer Engineering, Stillwater, Oklahoma, United States
Radiation at terahertz frequencies can be used to analyze the structural dynamics of water and biomolecules, but applying the technique to aqueous solutions and tissues remains challenging since terahertz radiation is strongly absorbed by water. While this absorption enables certain analyses, such as the structure of water and its interactions with biological solutes, it limits the thickness of samples that can be analyzed, and it drowns out weaker signals from biomolecules of interest. We present a method for analyzing water-rich samples via time-domain terahertz optoacoustics over a 104-fold thickness ranging from microns to centimeters. We demonstrate that adjusting the temperature to alter the terahertz optoacoustic (THz-OA) signal of water improves the sensitivity with which it can be analyzed and, conversely, can reduce or even “silence” its signal. Temperature-manipulated THz-OA signals of aqueous solutions allow detection of solutes such as ions with an order of magnitude greater sensitivity than terahertz time-domain spectroscopy, and potentially provide more characteristic parameters related to both terahertz absorption and ultrasonic propagation. Terahertz optoacoustics may be a powerful tool for spectroscopy and potential imaging of aqueous solutions and tissues to explore molecular interactions and biochemical processes.
terahertz optoacoustics terahertz pulse time-domain detection label-free water 
Advanced Photonics
2021, 3(2): 026003

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