定子绝缘剩余使用寿命的在线估计

W. R. Jensen, E. Strangas, Shanelle N. Foster
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引用次数: 2

摘要

在机器驱动拓扑结构中,宽带隙半导体器件正变得越来越普遍。这些器件提高了效率,可以在更高的开关频率下工作。然而,较高的开关频率将增加施加在机器绝缘上的电应力。电气应力、过热、机械振动和环境污染是导致绝缘退化的主要因素。绝缘的击穿将导致两导体之间的短路故障。短路故障可以迅速传播并导致灾难性故障。本课题提出了一种通过监测漏电电流的变化趋势,在线准确预测定子绝缘剩余使用寿命(RUL)的方法。随着绝缘层的退化,泄漏电流瞬态响应中的超调量呈指数级减小。模拟峰值检测电路使用低频采样来获取该幅度。应用扩展卡尔曼滤波预测绝缘的RUL。提出的策略将提高机器的可靠性,特别是当使用宽带隙器件时,同时不需要昂贵或特殊的设备来评估绝缘的健康状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Online estimation of remaining useful life of stator insulation
Wide bandgap semiconductor devices in machine drive topologies are becoming more prevalent. These devices improve efficiency and can operate at higher switching frequencies. However, higher switching frequencies will increase the electrical stress applied to the insulation of the machine. Electrical stress, excessive heating, mechanical vibrations, and environmental contamination are leading factors that contribute to insulation degradation. Breakdown of the insulation will lead to a short circuit fault between two conductors. Short circuit faults can quickly propagate and lead to catastrophic failure. This project proposes an online method to accurately predict the remaining useful life (RUL) of the stator insulation by monitoring a trend in the leakage current. As the insulation degrades, the magnitude of the overshoot in the transient response of the leakage current exponentially decreases. An analog peak detection circuit is used to acquire this magnitude using low frequency sampling. An Extended Kalman Filter is applied to predict the RUL of the insulation. The proposed strategy will improve machine reliability, especially when using wide bandgap devices, while not requiring expensive or special equipment for assessing the health of the insulation.
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