LuGre model–based robust adaptive control for a pump-controlled hydraulic actuator experiencing friction

IF 1.7 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS Transactions of the Institute of Measurement and Control Pub Date : 2024-01-06 DOI:10.1177/01423312231201676
Bing-Long Wang, Yan Cai, Jin-Chun Song, N. Sepehri
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Abstract

In this paper, a LuGre model–based robust adaptive control (RAC) approach is presented for a pump-controlled hydraulic actuator. We first decompose the LuGre friction model into its steady-state model and a lumped dynamic part applying the mean value theorem, which are compensated by a feedforward term and a robust adaptive term, respectively. The robust adaptive term also plays a part in mismatched disturbance attenuation. In addition, parametric uncertainties and matched disturbances are handled by σ-modified adaptation laws and a robust control law, respectively. The stability of the closed-loop system is proved via the Lyapunov analysis. The efficacy and robustness of the proposed approach are validated by comparative experiments. Compared with common adaptive friction compensation methods, the proposed method has a simpler structure, less computational burden, better control performance, and stronger robustness. Moreover, since the available information is separated from the LuGre model and acts as a model-based compensation term, the design conservativeness of RAC is effectively reduced.
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基于 LuGre 模型的鲁棒自适应控制,适用于存在摩擦的泵控液压致动器
本文针对泵控液压执行器提出了一种基于 LuGre 模型的鲁棒自适应控制 (RAC) 方法。我们首先应用均值定理将 LuGre 摩擦模型分解为稳态模型和块状动态部分,并分别通过前馈项和鲁棒自适应项进行补偿。鲁棒自适应项还在不匹配干扰衰减方面发挥了作用。此外,参数不确定性和匹配干扰也分别由 σ 修正自适应定律和鲁棒控制定律处理。通过 Lyapunov 分析证明了闭环系统的稳定性。对比实验验证了所提方法的有效性和鲁棒性。与常见的自适应摩擦补偿方法相比,所提出的方法结构更简单、计算负担更小、控制性能更好、鲁棒性更强。此外,由于可用信息从 LuGre 模型中分离出来,并作为基于模型的补偿项,因此有效降低了 RAC 的设计保守性。
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来源期刊
CiteScore
4.10
自引率
16.70%
发文量
203
审稿时长
3.4 months
期刊介绍: Transactions of the Institute of Measurement and Control is a fully peer-reviewed international journal. The journal covers all areas of applications in instrumentation and control. Its scope encompasses cutting-edge research and development, education and industrial applications.
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