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Electromagnetic regenerative suspension system for ground vehicles

机译:地面车辆的电磁再生悬挂系统

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This paper considers an electromagnetic regenerative suspension system (ERSS) that recovers the kinetic energy originated from vehicle vibration, which is previously dissipated in traditional shock absorbers. It can also be used as a controllable damper that can improve the vehicle's ride and handling performance. The proposed electromagnetic regenerative shock absorbers (ERSAs) utilize a linear or a rotational electromagnetic generator to convert the kinetic energy from suspension vibration into electricity, which can be used to reduce the load on the alternator so as to improve fuel efficiency. A complete ERSS is discussed here that includes the regenerative shock absorber, the power electronics for power regulation and suspension control, and an electronic control unit (ECU). Different shock absorber designs are proposed and compared for simplicity, efficiency, energy density, and controlled suspension performances. Both simulation and experiment results are presented and discussed.
机译:本文考虑了一种电磁再生悬架系统(ERSS),该系统可回收源自车辆振动的动能,而该动能先前已在传统减震器中消散。它也可以用作可控制的减震器,以改善车辆的行驶和操纵性能。提出的电磁再生减震器(ERSA)利用线性或旋转电磁发电机将悬浮振动产生的动能转换为电能,从而可以减少交流发电机上的负荷,从而提高燃油效率。这里讨论了一个完整的ERSS,包括再生减震器,用于功率调节和悬挂控制的电力电子设备以及电子控制单元(ECU)。为了简化,效率,能量密度和可控制的悬挂性能,提出了不同的减震器设计并进行了比较。给出并讨论了仿真结果和实验结果。

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