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ROBUST CONTROL OF OSCILLATIONS IN AGRICULTURAL TRACTORS

机译:农用拖拉机振动的鲁棒控制

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This paper relates to analyses and control of the oscillations occurring in many off road vehicles, which are designed without any suspension. Without suspension, the tire is the only elastic element acting between the vehicle and the ground but the suspension and damping properties of the tires cannot meet the demands for fast, safe and comfortable road transportation. In this paper the above-mentioned phenomenon is investigated with special focus on agricultural tractors. A control strategy is developed to make the implement counteract the movement of the tractor and thereby reducing the pitching oscillation. The control strategy is based on a linear plant model with constant or slowly varying parameters. Using a frequency-response approach the disturbance rejection is made effective over a significant portion of the system bandwidth. To improve robustness with respect to bounded disturbances (from the road) natural frequencies for the vehicle and implement is identified and the controller parameters tuned adaptively based on an optimization formulation.
机译:本文涉及对许多无悬挂设计的越野汽车中发生的振动的分析和控制。在没有悬架的情况下,轮胎是作用在车辆和地面之间的唯一弹性元件,但是轮胎的悬架和减震性能无法满足快速,安全和舒适的道路运输要求。本文主要针对农用拖拉机研究了上述现象。开发了一种控制策略以使机具抵消拖拉机的运动,从而减少俯仰振荡。控制策略基于具有恒定或缓慢变化参数的线性工厂模型。使用频率响应方法,可以在很大一部分系统带宽上有效地消除干扰。为了提高针对有限干扰(来自道路)的鲁棒性,对车辆和机具的固有频率进行了识别,并基于优化公式对控制器参数进行了自适应调整。

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