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首页> 外文期刊>Journal of Sound and Vibration >Vibration mitigation for in-wheel switched reluctance motor driven electric vehicle with dynamic vibration absorbing structures
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Vibration mitigation for in-wheel switched reluctance motor driven electric vehicle with dynamic vibration absorbing structures

机译:车轮开关磁阻电动机驱动电动车辆具有动态振动吸收结构的减震

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摘要

This paper presents a new approach for vibration mitigation based on a dynamic vibration absorbing structure (DVAS) for electric vehicles (EVs) that use in-wheel switched reluctance motors (SRMs). The proposed approach aims to alleviate the negative effects of vibration caused by the unbalanced electromagnetic force (UMEF) that arises from road excitations. The analytical model of SRMs is first formulated using Fourier series, and then a model of the coupled longitudinal-vertical dynamics is developed taking into consideration the external excitations consisting of the aerodynamic drag force and road unevenness. In addition, numerical simulations for a conventional SRM-suspension system and two novel DVASs are carried out for varying road levels specified by ISO standards and vehicle velocities. The results of the comparison reveal that a 35% improvement in ride comfort, 30% improvement of road handling, and 68% improvement in air gap between rotor and stator can be achieved by adopting the novel DVAS compared to the conventional SRM-suspension system. Finally, multi-body simulation (MBS) is performed using LMS Motion to validate the feasibility of the proposed DVAS. Analysis of the results shows that the proposed method can augment the effective application of SRMs in EVs. (c) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于用于轮内开关磁阻电动机(SRMS)的动态振动吸收结构(DVA)的动态振动吸收结构(DVA)的振动减缓方法。所提出的方法旨在减轻由道路激动产生的不平衡电磁力(UMEF)引起的振动的负面影响。 SRMS的分析模型首先使用傅里叶系列制定,然后开发了一种耦合纵向垂直动力学的模型,考虑了由气动阻力和道路不均匀组成的外部激励。此外,对传统的SRM悬架系统和两种新型DVASS的数值模拟进行了ISO标准和车辆速度指定的不同道路水平。比较结果表明,通过采用新颖的DVA与传统的SRM悬架系统采用新颖的DVA,可以通过采用新颖的DVA来实现乘坐舒适度,30%改善的乘坐舒适度,改善了68%的转子和定子的提高。最后,使用LMS运动来执行多体模拟(MBS)以验证所提出的DVA的可行性。结果分析表明,该方法可以增强SRMS在EVS中的有效应用。 (c)2018年elestvier有限公司保留所有权利。

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