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Chapter 49 Research on Semi-active Suspension Vibration Control Using Magneto-Rheological Damper

机译:第49章利用磁流变阻尼器的半主动悬架振动控制研究

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A novel semi-active vibration control technique using magneto-rheo-logical (MR) damper is presented in this paper for researching the key points that help realize the control of semi-active seat suspension. Bingham model is applied to establish for MR damper in this method, and the dynamics simulation on vehicle seat semi-active suspension system is carried out. In the case of random input of the Grade B road, the vibration characteristics of vehicle seat are analyzed and the effect of spring stiffness, damping, and vehicle speed on the vibration damping characteristic is discussed as well. Simulation results show that the semi-active suspension has a higher damping performance than passive suspension. PID control strategy is introduced to the semi-active suspension; the maximum acceleration decreases obviously to around 40 % compared with passive suspension that confirms that the effect of control strategy has played well.
机译:本文提出了一种利用磁流变(MR)阻尼器的新型半主动振动控制技术,以研究有助于实现半主动座椅悬架控制的关键点。该方法以宾汉模型为基础,建立了MR阻尼器,并在汽车座椅半主动悬架系统上进行了动力学仿真。在随机输入B级道路的情况下,分析了汽车座椅的振动特性,并讨论了弹簧刚度,阻尼和车速对振动阻尼特性的影响。仿真结果表明,半主动悬架比被动悬架具有更高的阻尼性能。 PID控制策略被引入到半主动悬架中。与被动悬架相比,最大加速度明显降低到40%左右,这证实了控制策略的效果很好。

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