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Design and study of a novel magneto-rheological regenerative suspension system

机译:新型磁流变再生悬挂系统的设计与研究

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Due to energy efficiency and environmental protection requirements, as well as a developing trend of magneto-rheological (MR) semi-active suspension, the study on key technologies of the novel MR power regenerative suspension system, in which a tubular linear permanent-magnet synchronous motor (TLPMSM) is equipped in parallel with MR damper (MRD), has important theoretical and engineering significances. In this paper, the dynamical model of the MR suspension and finite element model of TLPMSM are established, respectively, so as to set up the combination simulation platform of the regenerative suspension system. The frequency response is observed to reveal the influence of the installed TLPMSM on vehicle suspension characteristics. Further, the semi-active suspension performance and regenerated power are analysed under the harmonic and random road surface spectrum excitations to verify and improve the proposed design method. The proposed MR regenerative suspension is valuable in application of new energy automobiles especially electric vehicle. Consequently, this work lays a solid technical foundation for MR suspension system promotion and application for the future.
机译:由于能源效率和环境保护的要求,以及磁流变(MR)半主动式悬架的发展趋势,研究了新型MR功率再生式悬架系统的关键技术,其中管状线性永磁体同步电机(TLPMSM)与MR阻尼器(MRD)并联安装,具有重要的理论和工程意义。分别建立了MR悬架动力学模型和TLPMSM有限元模型,以建立再生悬架系统的组合仿真平台。观察到的频率响应揭示了已安装的TLPMSM对车辆悬架特性的影响。此外,在谐波和随机路面频谱激励下分析了半主动悬架性能和再生功率,以验证和改进所提出的设计方法。提出的MR再生悬架在新能源汽车尤其是电动汽车的应用中具有重要的价值。因此,这项工作为MR悬挂系统的未来推广和应用奠定了坚实的技术基础。

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