Rahman Saifur, Ali Farman, Muhammad Fazal, Irfan Muhammad, Glowacz Adam, Shahed Akond Mohammed, Armghan Ammar, Faraj Mursal Salim Nasar, Ali Amjad, Alkahtani Fahad Salem
Electrical Engineering Department, College of Engineering, Najran University Saudi Arabia, Najran 61441, Saudi Arabia.
Department of Electrical Engineering, Qurtuba University of Science and IT, D. I. Khan 29050, Pakistan.
Micromachines (Basel). 2022 Jan 5;13(1):85. doi: 10.3390/mi13010085.
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.
为了实现光网络(OM)的长距离数据传输,人们安装了数百公里的光纤。这些已部署光纤的可视化是一个突出问题,因为传统方法只能测量光损耗。因此,本文提出了分布式振动传感(DVS)估计机制,以可视化用于光网络安装的光纤行为,而这是传统测量无法实现的。所提出的技术将检测光纤内部的光功率,以及不同的物理参数,如光纤内部传输光的相位、振动频率和光损耗。光频域反射仪(OFDR)和光时域反射仪(OTDR)DVS技术的适用性在理论上针对光纤中的各种状态检测过程进行了验证。从时间、光信号频谱、频率以及许多外部物理事故对光纤的影响等方面对仿真模型进行了研究。