Institute of Electrical Information Technology, Clausthal University of Technology, 38678 Clausthal-Zellerfeld, Germany.
Advanced Optics Solutions (AOS) GmbH, Overbeckstr. 39a, 01139 Dresden, Germany.
Sensors (Basel). 2023 Apr 4;23(7):3746. doi: 10.3390/s23073746.
Although microwave photonic approaches have been used for fiber sensing applications before, most contributions in the past dealt with evaluating the sensor signal's amplitude. Carrying this topic on, the authors previously presented a scheme for the interrogation of fiber sensors that was based on a fiber Bragg grating's phase response for the electrical signal. However, neither has the measurement setup been analyzed nor have the amplitude and phase-based approaches been compared in detail before. Hence, this paper picks up the previously proposed setup, which relies on an amplitude modulation of the optical signal and investigates for sources of signal degradation, an aspect that has not been considered before. Following the incorporation of the microwave signal, the setup is suitable not only for an amplitude-based evaluation of fiber Bragg gratings but also for a phase-based evaluation. In this context, the signal-to-noise ratios are studied for the conventional amplitude-based evaluation approach and for the recently developed phase-based approach. The findings indicate a strong advantage for the signal-to-noise ratio of the phase response evaluation; an 11 dB improvement at the least has been found for the examined setup. Further studies may investigate the consequences and additional benefits of this approach for radio-over-fiber sensing systems or general performance aspects such as achievable sensitivity and sampling rates.
虽然微波光子方法以前已经用于光纤传感应用,但过去的大多数贡献都集中在评估传感器信号的幅度上。在此基础上,作者之前提出了一种基于光纤布拉格光栅(FBG)相位响应的光纤传感器询问方案。然而,在此之前,尚未对测量设置进行分析,也没有详细比较基于幅度和相位的方法。因此,本文采用了之前提出的基于光信号幅度调制的设置,并研究了信号降级的原因,这是以前没有考虑过的方面。在引入微波信号后,该设置不仅适用于光纤布拉格光栅的基于幅度的评估,也适用于基于相位的评估。在这种情况下,研究了传统基于幅度的评估方法和最近开发的基于相位的评估方法的信噪比。研究结果表明,相位响应评估的信噪比具有很大的优势;对于所检查的设置,发现至少有 11dB 的改善。进一步的研究可能会研究这种方法对无线电波在光纤传感系统中的影响和额外好处,或者一般性能方面,如可实现的灵敏度和采样率。