Monteiro Catarina S, Rodrigues António V, Viveiros Duarte, Linhares Cassiano, Mendes Hélder, Silva Susana O, Marques Paulo V S, Tavares Sérgio M O, Frazão Orlando
Department of Engineering Physics, Faculty of Engineering, University of Porto, R. Dr. Roberto Frias, s/n, 4200-465 Porto, Portugal.
Centre for Applied Photonics, Institute for Systems and Computer Engineering, Technology and Science (INESC TEC), Rua do Campo Alegre, 687, 4150-179 Porto, Portugal.
Sensors (Basel). 2021 Sep 13;21(18):6127. doi: 10.3390/s21186127.
Power transformers are central elements of power transmission systems and their deterioration can lead to system failures, causing major disruptions in service. Catastrophic failures can occur, posing major environmental hazards due to fires, explosions, or oil spillage. Early fault detection can be accomplished or estimated using electrical sensors or a chemical analysis of oil or gas samples. Conventional methods are incapable of real-time measurements with a low electrical noise due to time-consuming analyses or susceptibility to electromagnetic interference. Optical fiber sensors, passive elements that are immune to electromagnetic noise, are capable of structural monitoring by being enclosed in power transformers. In this work, optical fiber sensors embedded in 3D printed structures are studied for vibration monitoring. The fiber sensor is encapsulated between two pressboard spacers, simulating the conditions inside the power transformer, and characterized for vibrations with frequencies between 10 and 800 Hz, with a constant acceleration of 10 m/s. Thermal aging and electrical tests are also accomplished, aiming to study the oil compatibility of the 3D printed structure. The results reported in this work suggest that structural monitoring in power transformers can be achieved using optical fiber sensors, prospecting real-time monitoring.
电力变压器是输电系统的核心元件,其性能恶化会导致系统故障,造成重大服务中断。可能会发生灾难性故障,因火灾、爆炸或漏油而带来重大环境危害。早期故障检测可通过电气传感器或对油或气样本进行化学分析来完成或估计。传统方法由于分析耗时或易受电磁干扰,无法进行低电噪声的实时测量。光纤传感器作为对电磁噪声免疫的无源元件,通过封装在电力变压器内部能够实现结构监测。在这项工作中,对嵌入3D打印结构中的光纤传感器进行振动监测研究。光纤传感器被封装在两个绝缘纸板垫片之间,模拟电力变压器内部的条件,并对频率在10至800Hz、恒定加速度为10m/s的振动进行表征。还进行了热老化和电气测试,旨在研究3D打印结构与油的兼容性。这项工作中报告的结果表明,使用光纤传感器可以实现电力变压器的结构监测,有望实现实时监测。