Dipartimento di Ingegneria Industriale e dell'Informazione e di Economia, Università dell'Aquila, 67100 L'Aquila, Italy.
Sensors (Basel). 2023 Feb 26;23(5):2583. doi: 10.3390/s23052583.
Asynchronous motors represent a large percentage of motors used in the electrical industry. Suitable predictive maintenance techniques are strongly required when these motors are critical in their operations. Continuous non-invasive monitoring techniques can be investigated to avoid the disconnection of the motors under test and service interruption. This paper proposes an innovative predictive monitoring system based on the online sweep frequency response analysis (SFRA) technique. The testing system applies variable frequency sinusoidal signals to the motors and then acquires and processes the applied and response signals in the frequency domain. In the literature, SFRA has been applied to power transformers and electric motors switched off and disconnected from the main grid. The approach described in this work is innovative. Coupling circuits allow for the injection and acquisition of the signals, while grids feed the motors. A comparison between the transfer functions (TFs) of healthy motors and those with slight damage was performed with a batch of 1.5 kW, four-pole induction motors to investigate the technique's performance. The results show that the online SFRA could be of interest for monitoring induction motors' health conditions, especially for mission-critical and safety-critical applications. The overall cost of the whole testing system, including the coupling filters and cables, is less than EUR 400.
异步电动机在电气行业中使用的电机占很大比例。当这些电动机在运行中至关重要时,就需要合适的预测性维护技术。可以研究连续的非侵入式监测技术,以避免测试中的电动机和服务中断。本文提出了一种基于在线扫频响应分析 (SFRA) 技术的创新预测监测系统。该测试系统向电动机施加变频正弦信号,然后在频域中获取和处理施加的和响应信号。在文献中,SFRA 已应用于与主电网断开连接的电力变压器和电动机。本文工作中描述的方法具有创新性。耦合电路允许注入和采集信号,同时电网为电动机供电。对一批 1.5kW、四极感应电动机进行了健康电动机和轻微损坏电动机的传递函数 (TF) 比较,以研究该技术的性能。结果表明,在线 SFRA 可能对监测感应电动机的健康状况很有意义,特别是对任务关键型和安全关键型应用。整个测试系统(包括耦合滤波器和电缆)的总成本低于 400 欧元。