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首页> 外文期刊>Journal of Southeast University >Semi-active control for vibration attenuation of vehicle suspension with symmetric MR damper
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Semi-active control for vibration attenuation of vehicle suspension with symmetric MR damper

机译:带有对称MR阻尼器的车辆悬架减振的半主动控制

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摘要

A semi-active force tracking PI controller is formulated and analyzed for a magnetorheological (MR) fluid-based damper in conjunction with a quarter-vehicle model. Two different models of the MR-damper are integrated into the closed-loop system model, which includes: a model based upon the mean force-velocity (f-v) behaviour; and a model synthesis comprising inherent nonsmooth hysteretic force and the force limiting properties of the MR damper. The vehicle models are analyzed to study the vibration attenuation performance of the MR-damper using the semi-active force tracking PI control algorithm. The simulation results are also presented to demonstrate the influence of the damper nonlinearity, specifically the hysteresis, on the suspension performance. The results show that the proposed control strategy can yield superior vibration attenuation performance of the vehicle suspension actuated by the controllable MR-damper not only in the sprung mass resonance and the ride zones, but also in the vicinity of the wheel-hop. The results further show that the presence of damper hystersis deteriorates the suspension performance.
机译:结合四分之一车辆模型,针对基于磁流变(MR)流体的阻尼器制定并分析了半主动力跟踪PI控制器。 MR阻尼器的两个不同模型被集成到闭环系统模型中,该模型包括:基于平均力-速度(f-v)行为的模型;模型合成包括固有的非光滑滞后力和MR阻尼器的受力特性。使用半主动力跟踪PI控制算法对车辆模型进行分析,以研究MR阻尼器的减振性能。还给出了仿真结果,以证明阻尼器非线性(特别是磁滞)对悬架性能的影响。结果表明,所提出的控制策略不仅可以在可反弹的质量共振和行驶区域,而且可以在轮辋附近产生可控的MR阻尼器致动的车辆悬架优异的减振性能。结果进一步表明,阻尼器滞后的存在降低了悬架性能。

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