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Dynamic thermal modeling and application of electrical machine in hybrid drives

机译:电机动态热建模及其在混合驱动中的应用

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This paper presents a holistic view of thermal modeling for an electrical machine used in a Hybrid Electrical Vehicle (HEV). This interconnected system model focuses on the thermal assessment of an electrical machine in a HEV application and estimates the time to failure of the machine depending on the construction of the insulation system and the exploitation of the machine. A transient thermal model of the machine is made as a Lumped Parameter Model (LPM) based on dimensions, material properties and Finite Element Analysis (FEA) determining the power loss model and Computational Fluid Dynamics (CFD) cooling model. The LPM thermal model is compared to measurements and later used in a vehicle powertrain model. Based on the verified thermal model, the estimation of the winding temperature in the machine over different driving cycles is used to predict the thermal degradations of the main insulation and the thermal lifetime of the machine.
机译:本文提供了用于混合动力电动汽车(HEV)的电机热建模的整体视图。这种互连的系统模型着重于HEV应用中电机的热评估,并根据绝缘系统的构造和设备的开发情况来估算设备的故障时间。基于尺寸,材料特性和确定功率损耗模型和计算流体力学(CFD)冷却模型的有限元分析(FEA),将机器的瞬态热模型制成为集总参数模型(LPM)。将LPM热模型与测量值进行比较,然后将其用于车辆动力总成模型。基于已验证的热模型,可以估算不同驱动周期下电机的绕组温度,以预测主绝缘的热退化和电机的热寿命。

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