| Literature DB >> 35056250 |
Saifur Rahman1, Farman Ali2, Fazal Muhammad3, Muhammad Irfan1, Adam Glowacz4, Mohammed Shahed Akond1, Ammar Armghan5, Salim Nasar Faraj Mursal1, Amjad Ali6, Fahad Salem Alkahtani1.
Abstract
Hundreds of kilometers of optical fibers are installed for optical meshes (OMs) to transmit data over long distances. The visualization of these deployed optical fibers is a highlighted issue because the conventional procedure can only measure the optical losses. Thus, this paper presents distributed vibration sensing (DVS) estimation mechanisms to visualize the optical fiber behavior installed for OMs which is not possible by conventional measurements. The proposed technique will detect the power of light inside the optical fiber, as well as different physical parameters such as the phase of transmitted light inside the thread, the frequency of vibration, and optical losses. The applicability of optical frequency domain reflectometry (OFDR) and optical time-domain reflectometry (OTDR) DVS techniques are validated theoretically for various state detection procedures in optical fibers. The simulation model is investigated in terms of elapsed time, the spectrum of a light signal, frequency, and the impact of many external physical accidents with optical fibers.Entities:
Keywords: distribution vibration sensing; frequency division multiplexing; optical meshes; phase optical time/frequency domain reflectometry
Year: 2022 PMID: 35056250 PMCID: PMC8780534 DOI: 10.3390/mi13010085
Source DB: PubMed Journal: Micromachines (Basel) ISSN: 2072-666X Impact factor: 2.891
Figure 1The installation of optical fiber communication system and external disturbance which creates losses inside the optical fiber.
Figure 2Relative distance estimations.
Figure 3Comparative distance estimations by the OFDR framework.
Figure 4Optical frequency measurement in terms of time at 5000 m. fiber length.
Figure 5OTDR-coherent FDM-based vibration sensing classifications.
Figure 6Analysis of a sequence based on frequency coding.
Figure 7(a) Trace OTDR wave processing. (b) After STFT.
Figure 8Amplitude vibration traces at different instants in time and 42.5 kHz frequency.
Figure 9Amplitude vibration traces at different instant frequencies and 8 ms time.
Figure 10Estimation of vibration spectral density.
Figure 11Experimental analysis of the implemented optical fiber for communication.