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Scalable Thermal Model of an Electric Machine for the Thermal Assessment in Different Electric Vehicle Use Cases

机译:用于不同电动汽车用例的热评估的电机可扩展热模型

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In this paper, a scalable thermal model of a permanent magnet electric machine is presented. The model is designed to simulate the temperature development of active machine parts during different driving cycles depending on the machine diameter, the length, and the turns per coil. The impact of the various parameters is demonstrated by means of a sensitivity analysis. The sensitivity analysis is performed for two different driving cycles and two different vehicle types in order to outline the dependence of the general vehicle layout and the use case on the thermal machine behavior. Only machines that are able to perform the respective duty cycle are considered. It shows that despite the increase in thermal heat capacity, big machines do not always experience the lowest temperature during transient operation. The method demonstrated in this paper allows a thermal assessment in an early development stage, when machine scaling is used for a first estimation of the required volume of the PMSM.
机译:在本文中,提出了永磁电机的可扩展热模型。该模型旨在根据机器直径,长度和每个线圈的匝数来模拟不同驱动周期中活动机器零件的温度变化。各种参数的影响通过敏感性分析得到证明。针对两个不同的行驶周期和两种不同的车辆类型执行灵敏度分析,以概述总体车辆布局和用例对热机行为的依赖性。仅考虑能够执行相应占空比的机器。结果表明,尽管热容量有所增加,但大型机器在瞬态运行过程中并不总是会经历最低温度。本文中演示的方法允许在早期开发阶段进行热评估,这时使用机器缩放比例来初步估计所需的PMSM体积。

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