基于rise的具有渐近规定性能的自主地面车辆综合运动控制

Chuan Hu, Hongbo Gao, Jinghua Guo, H. Taghavifar, Yechen Qin, J. Na, Chongfeng Wei
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引用次数: 42

摘要

本文研究了考虑瞬态性能和系统扰动的自动地面车辆(agv)的车道保持和滚转综合控制问题。提出了误差符号鲁棒积分控制策略,通过保证闭环系统的渐近稳定,衰减系统扰动,并将被控状态保持在规定的性能边界内,达到防止侧翻的车道保持控制目的。本文做出了以下贡献:1)提出了一种新的不要求精确初始误差的规定性能函数(PPF),以保证跟踪误差限制在预定义的渐近边界内;2)提出了一种需要较少自适应更新参数的改进神经网络估计器来逼近未知的垂直动态;3)为了实现综合控制目标,提出了基于PPF的改进RISE控制,通过积分sgn误差函数解析保证了控制器的连续性和闭环系统的渐近稳定性。用李雅普诺夫函数证明了系统的总体稳定性。最后,在高保真CarSim-Simulink仿真的基础上,通过两种典型驾驶动作的对比仿真,验证了控制器的有效性和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RISE-Based Integrated Motion Control of Autonomous Ground Vehicles With Asymptotic Prescribed Performance
This article investigates the integrated lane-keeping and roll control for autonomous ground vehicles (AGVs) considering the transient performance and system disturbances. The robust integral of the sign of error (RISE) control strategy is proposed to achieve the lane-keeping control purpose with rollover prevention, by guaranteeing the asymptotic stability of the closed-loop system, attenuating systematic disturbances, and maintaining the controlled states within the prescribed performance boundaries. Three contributions have been made in this article: 1) a new prescribed performance function (PPF) that does not require accurate initial errors is proposed to guarantee the tracking errors restricted within the predefined asymptotic boundaries; 2) a modified neural network (NN) estimator which requires fewer adaptively updated parameters is proposed to approximate the unknown vertical dynamics; and 3) the improved RISE control based on PPF is proposed to achieve the integrated control objective, which analytically guarantees both the controller continuity and closed-loop system asymptotic stability by integrating the signum error function. The overall system stability is proved with the Lyapunov function. The controller effectiveness and robustness are finally verified by comparative simulations using two representative driving maneuvers, based on the high-fidelity CarSim–Simulink simulation.
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来源期刊
自引率
0.00%
发文量
1
审稿时长
6.0 months
期刊介绍: The scope of the IEEE Transactions on Systems, Man, and Cybernetics: Systems includes the fields of systems engineering. It includes issue formulation, analysis and modeling, decision making, and issue interpretation for any of the systems engineering lifecycle phases associated with the definition, development, and deployment of large systems. In addition, it includes systems management, systems engineering processes, and a variety of systems engineering methods such as optimization, modeling and simulation.
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