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首页> 外文期刊>IEEE Transactions on Industry Applications >Hybrid Acoustic Model of Electric Vehicles: Force Excitation in Permanent-Magnet Synchronous Machines
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Hybrid Acoustic Model of Electric Vehicles: Force Excitation in Permanent-Magnet Synchronous Machines

机译:电动汽车的混合声学模型:永磁同步电机中的力激励

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摘要

In this paper, an integrated model for acoustic evaluation of electric vehicles is introduced. The paper focuses on the force excitation part of the model. The analysis is performed for permanent magnet synchronous machines. The excitation forces are placed on the stator teeth and calculated for a structure dynamic model of the power train. A model for the acoustic emission is adapted, and finally, the psychoacoustical behavior is characterized at the position of the driver of the e-car. An approach for the design of the rotor pole topology is introduced to ensure a beneficial acoustic behavior under consideration of air gap flux density and related force densities on the stator teeth. The calculation is performed using finite-element analysis simulation, but also analytical design methods are considered. Objective of this comparison is a very short computation time and, therefore, an efficient simulation process. The model is validated by measurements on test benches.
机译:本文介绍了一种用于电动汽车声学评估的集成模型。本文着重于模型的力激励部分。分析是针对永磁同步电机进行的。激振力放置在定子齿上,并针对动力总成的结构动力学模型进行计算。调整声发射模型,最后,在电动汽车驾驶员的位置表征心理声学行为。引入了一种设计转子磁极拓扑的方法,以确保在考虑气隙磁通密度和定子齿上的相关力密度的情况下确保良好的声学性能。该计算是使用有限元分析模拟进行的,但也考虑了分析设计方法。比较的目的是非常短的计算时间,因此是有效的仿真过程。通过在试验台上进行测量来验证该模型。

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