An advanced lifetime prediction method for permanent magnet synchronous machines

D. Huger, D. Gerling
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引用次数: 18

Abstract

In this paper, a system of coupled and interacting models for dynamic electric and thermal behavior of an electrical machine is presented. The models are specifically designed for maximum execution speed and are suitable for simulating the machine behavior over long time periods and even the entire lifetime of the machine. Nevertheless, the results proved to be remarkably accurate. Arbitrary electrical faults and thermal asymmetries can be simulated. The influence of the winding resistance and magnet temperature on the machine behavior is implemented. The machine models are connected to lifetime models for the winding insulation at different locations and for the bearings. The aging of those machine components over a driving cycle (CADC) was investigated for healthy case and a given machine design. The temperature distribution inside the machine was analyzed for that specific driving cycle.
一种先进的永磁同步电机寿命预测方法
本文提出了一个电机动态电、热特性的耦合和相互作用模型系统。这些模型是专门为最大的执行速度而设计的,适用于模拟长时间甚至整个机器生命周期内的机器行为。然而,结果证明是非常准确的。可以模拟任意电气故障和热不对称。研究了绕组电阻和磁体温度对电机性能的影响。机器模型连接到不同位置和轴承的绕组绝缘寿命模型。在健康情况下和给定的机械设计条件下,研究了这些机械部件在一个驾驶循环(CADC)中的老化。在特定的驱动循环中,分析了机器内部的温度分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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