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Fuzzy hybrid control of off-road vehicle suspension fitted with magnetorheological dampers

机译:具有磁流变阻尼器的越野汽车悬架的模糊混合控制

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摘要

The vibration caused by severe road excitation influences off-road vehicle suspension performance. The vibration control of the suspension system is a crucial factor for modern vehicles. Smart control devices (magnetorheological dampers) are proposed as a first step to handle a multiple suspension system of off-road vehicles. The magnetorheological (MR) dampers can be employed as smart dampers for vibration suppression of the suspension system; this is done by varying the produced damping force. In this paper an investigation is presented on the effectiveness of such smart dampers in attenuating the vibration of a multiple suspension system. This goal is accomplished by designing a new fuzzy hybrid controller and studying its effectiveness on the suspension performance. The multiple suspension system considered here comprises a chassis, five wheels and three MR dampers. The chassis is suspended over the five wheels through five compression springs. Three MR dampers are attached to the first, second and the fifth wheel. The stiffness of the wheels is represented by five compression springs. Only the bounce and the pitch of the chassis are considered. The assessment of the proposed model is carried out through a simulation scheme under bump and sinusoidal excitations in the time domain. The excitation of the five wheels is done independently. The simulation is accomplished using the MATLAB/SIMULINK software. The simulation results show the effectiveness and robustness of the new controller in conjunction with MR dampers in vibration suppression. Compared to the passive suspension, the body bounce, body displacement, angular acceleration and pitch angle can be well controlled. Copyright © 2012 by ASME.
机译:严重的道路激励引起的振动会影响越野车辆的悬架性能。悬架系统的振动控制是现代车辆的关键因素。提出了智能控制设备(磁流变阻尼器)作为处理越野车辆多悬架系统的第一步。磁流变(MR)阻尼器可用作智能阻尼器,用于抑制悬架系统的振动;这是通过改变产生的阻尼力来完成的。在本文中,对这种智能阻尼器在减弱多悬架系统振动方面的有效性进行了研究。通过设计新的模糊混合控制器并研究其对悬架性能的有效性来实现此目标。这里考虑的多重悬挂系统包括一个底盘,五个车轮和三个MR阻尼器。底盘通过五个压缩弹簧悬挂在五个车轮上。三个MR阻尼器连接到第一,第二和第五个车轮。车轮的刚度由五个压缩弹簧表示。仅考虑底盘的弹跳和俯仰。通过模拟方案在时域中的颠簸和正弦激励下对提出的模型进行评估。五个车轮的励磁是独立完成的。使用MATLAB / SIMULINK软件可以完成仿真。仿真结果表明,新型控制器与MR阻尼器配合使用可有效抑制振动。与被动悬架相比,可以很好地控制车身的弹跳,车身位移,角加速度和俯仰角。 ASME版权所有©2012。

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    Ata, W.G.; Oyadiji, S.O.;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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