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PREVIEW SUSPENSION CONTROL FOR A FULL TRACKED VEHICLE

机译:一辆全履带车辆的预览悬挂控制

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摘要

In this study, preview control algorithms for the active and semi-active suspension systems of a full tracked vehicle (FTV) are designed based on a 3-D.O.F model and evaluated. The main issue of this study is to make the ride comfort characteristics of a fast moving tracked vehicle better to keep an operator's driving capability. Since road wheels almost trace the profiles of the road surface as long as the track doesn't depart from the ground, the preview information can be obtained by measuring only the absolute position or velocity of the first road wheel. Simulation results show that the performance of the sky-hook suspension system almost follows that of full state feedback suspension system and the on-off semi-active system carries out remarkable performance with the combination of 12 on-off semi-active suspension units. The results simulated with 1st and 2nd weighting sets mean that the suspension system combined with the soft type of inner suspension and hard type of outer suspension can carry out better ride comfort characteristics than that with identical suspensions. The full tracked vehicle (FTV) system is uncontrollable and the system is split into controllable and uncontrollable subspace using singular value decomposition transformation. Frequency response curves to four types of inputs, such as heaving, pitching, rolling, and warping inputs, also demonstrate the merits of preview control in ride comfort. All the frequency characteristic responses confirm the continuous time results.
机译:在这项研究中,基于3-D.O.F模型设计并评估了全履带车辆(FTV)的主动和半主动悬架系统的预览控制算法。这项研究的主要目的是使快速行驶的履带车辆的乘坐舒适性更好地保持驾驶员的驾驶能力。由于只要轨道不离开地面,车轮都会几乎跟踪路面轮廓,因此可以仅通过测量第一个车轮的绝对位置或速度来获取预览信息。仿真结果表明,空钩悬挂系统的性能几乎追随全状态反馈悬挂系统的性能,而开关半主动系统结合了12个开关半主动悬挂单元,则具有非凡的性能。用第一和第二加权集模拟的结果表明,与相同悬架相比,将悬架系统与内部悬架的软性类型和外部悬架的硬性类型相结合可以提供更好的乘坐舒适性。全轨车辆(FTV)系统是不可控的,并且使用奇异值分解变换将该系统分为可控和不可控子空间。四种输入类型(例如升沉,俯仰,滚动和翘曲输入)的频率响应曲线也证明了预坐控制在乘坐舒适性方面的优点。所有频率特性响应均确认了连续时间结果。

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