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Induction Machine Insulation Health State Monitoring Based on Online Switching Transient Exploitation

机译:基于在线切换暂态开发的感应机绝缘健康状态监测

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Today's variable-speed drives are usually operated close to their maximum tolerable conditions. The fast switching of modern power electronic devices leads to high stress of the winding insulation. As a result, an insulation breakdown may lead to sudden breakdown and high economic loss. To avoid unpredictable downtimes and enable repair on demand, monitoring of the insulation health state is getting more and more important. This paper proposes a method to monitor changes in the insulation health state by evaluating the machine high-frequency properties. The deterioration of the insulation condition is usually linked with a change of insulation capacity and thus also influences high-frequency properties. Initiating a voltage step excitation of the machine by the switching of the inverter, the high-frequency properties can be identified by measuring the resulting current response. This response is usually seen as current signal ringing and contains the machine high-frequency information. By applying signal processing tools, changes in the high-frequency information are extracted, and an insulation state indicator is derived. The applicability of the method is verified by measurements on two test machines (5.5 kW and 1.4 MW) having different power ratings as well as different insulation systems.
机译:当今的变速驱动器通常在接近其最大允许条件下运行。现代电力电子设备的快速切换导致绕组绝缘的高应力。结果,绝缘击穿可能导致突然击穿和高经济损失。为了避免不可预测的停机时间并按需进行维修,对绝缘健康状态的监控变得越来越重要。本文提出了一种通过评估电机的高频特性来监测绝缘健康状态变化的方法。绝缘条件的恶化通常与绝缘能力的变化有关,因此也影响高频特性。通过逆变器的开关启动电机的电压阶跃激励,可以通过测量结果电流响应来识别高频特性。该响应通常被视为当前信号振铃,并包含机器的高频信息。通过应用信号处理工具,可以提取高频信息中的变化,并得出绝缘状态指示符。该方法的适用性通过在两台具有不同额定功率和不同绝缘系统的试验机(5.5 kW和1.4 MW)上的测量得到验证。

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