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Thermal Analysis of Modular-Spoke-Type Permanent-Magnet Machines Based on Thermal Network and FEA Method

机译:基于热网络和有限元分析的模块化辐条式永磁电机热分析

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摘要

Modular-spoke-type permanent-magnet (MSTPM) machines are novel in-wheel traction machines for electric vehicles (EVs). Considering the strict constraints including the mass and volume of electric machines in EVs, which are heavily dependent on the dissipation condition, an accurate thermal model and resultant temperature distribution analysis are key challenges. Therefore, in this paper, a lumped parameter thermal network (LPTN) model for thermal analysis of MSTPM machines is proposed, where the heat transfer coefficients are determined theoretically instead of empirically, which means that the proposed LPTN model can be applicable for the MSTPM machines with different specifications and parameters. Both the steady-state and transient-state temperature rises are analyzed by the LPTN model, and the results are verified by both 3-D finite element analysis (FEA) predictions and experiments, indicating that the proposed method has advantages in both computational efficiency and accuracy.
机译:模块化辐条式永磁体(MSTPM)机器是用于电动汽车(EV)的新型轮内牵引机器。考虑到包括电动汽车中电机的质量和体积在内的严格约束条件,这些约束条件在很大程度上取决于耗散条件,因此准确的热模型和结果温度分布分析是关键挑战。因此,本文提出了一种用于MSTPM机器热分析的集总参数热网络(LPTN)模型,该模型的传热系数是理论确定的,而不是凭经验确定的,这意味着所提出的LPTN模型可适用于MSTPM机器具有不同的规格和参数。通过LPTN模型分析了稳态和瞬态温度升高,并通过3-D有限元分析(FEA)预测和实验验证了结果,表明该方法在计算效率和计算效率上均具有优势。准确性。

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