首页> 外文会议>Proceedings of the ASME Design Engineering Division 2003 >MODELING AND CONTROL OF MAGNETORHEOLOGICAL DAMPERS FOR VIBRATION ISOLATION
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MODELING AND CONTROL OF MAGNETORHEOLOGICAL DAMPERS FOR VIBRATION ISOLATION

机译:振动隔离磁流变阻尼器的建模与控制

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Semi-active isolators offer significant improvement in performance over passive isolators. These systems benefit from the advantages of active systems with the reliability of the passive systems. In this work we study a vibration isolation system with a magnetorheological (MR) damper. The experimental investigation of the mechanical properties of a commercially available linear MR damper (RD-1005-3) was conducted next. The mathematical Bouc-Wen model was adopted to predict the performance of MR damper. In addition, a modified Bingham model has been developed to characterize the damper behavior more accurately and efficiently. The measured hysteresis characteristics of field-dependent damping forces are compared with the simulation results from the described mathematical models. The accuracy of a damping-force controller using the proposed method is also demonstrated experimentally. Finally, a scaled quarter car model is set up to study the performance of the control strategy. The experimental results show that with the semi-active control the vibration of the quarter car model is well controlled.
机译:与无源隔离器相比,半有源隔离器的性能有了显着提高。这些系统受益于主动系统的优势以及被动系统的可靠性。在这项工作中,我们研究了带有磁流变(MR)阻尼器的隔振系统。接下来,对市售的线性MR阻尼器(RD-1005-3)的机械性能进行了实验研究。采用数学Bouc-Wen模型来预测MR阻尼器的性能。另外,已经开发了改进的宾厄姆模型以更准确和有效地表征阻尼器性能。将所测得的与场有关的阻尼力的磁滞特性与所描述的数学模型的仿真结果进行比较。还通过实验证明了使用所提出的方法的阻尼力控制器的精度。最后,建立了按比例缩放的四分之一汽车模型来研究控制策略的性能。实验结果表明,通过半主动控制,四分之一汽车模型的振动得到了很好的控制。

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