论文标题

在可变有效载荷下使用平行主动链路悬挂的全车的MU合成PID控制

Mu-synthesis PID Control of Full-Car with Parallel Active Link Suspension Under Variable Payload

论文作者

Feng, Zilin, Yu, Min, Evangelou, Simos A., Jaimoukha, Imad M, Dini, Daniele

论文摘要

本文提出了一种使用频率分离范式的MU合成PID控制方案,用于最近提出的新型活性悬浮液,即平行的主动链接悬架(PALS)。开发的MU合成控制方案优于先前为PALS设计的常规H-侵蚀控制,就骑行舒适性和道路固定(高频动力学)而言,具有重要的现实不确定性,例如在车辆有效载荷中。开发的PID控制方法用于确保良好的底盘态度控制能力以及俯仰和滚动运动的最小化(低频动力学)。进一步介绍了一种合并上述PID和MU合成控制的多目标控制方法,以同时实现态度运动的低频缓解和车辆的高频振动抑制。在这项工作中,使用具有不同的ISO定义道路事件和可变车辆有效载荷的非线性模拟来测试合成控制器的七度体育用途车辆(SUV)完整的汽车模型,用于测试合成的控制器。与传统的被动悬架以及通过常规H-赋值控制的主动控制的PAL相比,该结果表明了控制方案的显着鲁棒性和性能,这是针对调查中考虑的广泛的车辆有效载荷实现的。

This paper presents a combined mu-synthesis PID control scheme, employing a frequency separation paradigm, for a recently proposed novel active suspension, the Parallel Active Link Suspension (PALS). The developed mu-synthesis control scheme is superior to the conventional H-infinity control, previously designed for the PALS, in terms of ride comfort and road holding (higher frequency dynamics), with important realistic uncertainties, such as in vehicle payload, taken into account. The developed PID control method is applied to guarantee good chassis attitude control capabilities and minimization of pitch and roll motions (low frequency dynamics). A multi-objective control method, which merges the aforementioned PID and mu-synthesis-based controls is further introduced to achieve simultaneously the low frequency mitigation of attitude motions and the high frequency vibration suppression of the vehicle. A seven-degree-of-freedom Sport Utility Vehicle (SUV) full car model with PALS, is employed in this work to test the synthesized controller by nonlinear simulations with different ISO-defined road events and variable vehicle payload. The results demonstrate the control scheme's significant robustness and performance, as compared to the conventional passive suspension as well as the actively controlled PALS by conventional H-infinity control, achieved for a wide range of vehicle payload considered in the investigation.

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