光纤光栅传感器的延迟不敏感时间拉伸研究

Yue-Zhong Feng, Yuanli Yue, Qiang Wu, Chao Wang
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引用次数: 0

摘要

利用超短光脉冲的光子时间拉伸(PTS)方法实现了波长调制光纤传感器的超快速实时探测。通常假设色散引起的波长-时间映射是唯一的和确定的,因此传感器的波长信息可以从其时间位置确定。然而,在遥感中由于光纤长度变化或距离变化引起的随机时移一直被忽视。本文提出并演示了一种用于光纤光栅(FBG)传感器的新型延迟不敏感pts辅助超快探测技术。通过应用啁啾微波频率编码,使得可以从编码拉伸脉冲的瞬时微波频率检测到光波长,从而消除随机时移的影响,从而使其成为可能。通过数值模拟研究阐述了所提出的讯问系统的性能。超高速讯问远程放置的光纤光栅传感器已经证明。结果证明,该系统不受传感器与询问阅读器之间距离变化的影响。实现了0.0016nm的高波长分辨率和50 MHz的检测速度,并具有优越的时延不敏感特性。
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Delay-Insensitive Time Stretch Interrogation of Fiber Bragg Grating Sensors
Photonic time stretch (PTS) approach using ultrashort optical pulses has enabled ultrafast real-time interrogation of wavelength-modulated optical fiber sensors. It has been always assumed that dispersion induced wavelength-to-time mapping is unique and determinic such that the wavelength information of the sensor can be determined from its temporal position. However, random time shifts caused by fibre length changes or distance variations in remote sensing have been overlooked. In this paper, a novel delay-insensitive PTS-assisted ultrafast interrogation technique for remote fiber Bragg grating (FBG) sensors has been proposed and demonstrated. It is made possible by applying chirped microwave frequency encoding such that optical wavelength can be detected from the instantaneous microwave frequency of the encoded stretched pulse, eliminating the effect of random time shifts. The performance of the proposed interrogation system is elaborated by numerical simulation studies. Ultrafast interrogation of remotely placed FBG sensors has been demonstrated. Results verified that the system is immune from distance changes between the sensor and the interrogation reader. A high wavelength resolution of 0.0016nm and a 50 MHz detecting speed with the superior time-delay insensitive characteristic is realized.
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