Control of Nonlinear Systems with Asymmetric yet Time-varying Output Constraint: A Direct Transformational Approach

Kai Zhao, Hui Gao, Yongduan Song, Yongcheng Zhou
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Abstract

In this paper, an adaptive control for strict-feedback nonlinear systems with output constraint is investigated. Different from the Barrier Lyapunov Function (BLF) based constant constraint control methods, an nonlinear output-dependent transformation is introduced, which removes the commonly used conservative design of converting the output constraint into tracking error related constraint, relaxing the requirement on the initial condition of system output; Then by constructing a new coordinate transformation, together with the backstepping and tuning function techniques, the developed adaptive control ensures that all signals in the closed-loop systems are bounded and the symmetric output constraint is not violated. Furthermore, to deal with the asymmetric yet time-varying output constraint and to reduce the difficulty of stability analysis in the asymmetric BLF (ABLF) control schemes, another nonlinear output-dependent transformation is developed such that the output constraint can be handled directly and the extra effort to ensure the continuity and differentiability of virtual controllers is not needed. The effectiveness and superiority of the proposed method has also be validated via numerical simulation.
具有非对称时变输出约束的非线性系统控制:一种直接变换方法
研究了具有输出约束的严格反馈非线性系统的自适应控制问题。与基于Barrier Lyapunov函数(BLF)的常约束控制方法不同,引入了非线性输出相关变换,消除了将输出约束转换为跟踪误差相关约束的保守设计,放宽了对系统输出初始条件的要求;然后通过构造一个新的坐标变换,结合反演和整定函数技术,使闭环系统中的所有信号都是有界的,且不违反对称输出约束。此外,为了处理非对称时变输出约束和降低非对称BLF (ABLF)控制方案稳定性分析的难度,提出了另一种非线性输出相关变换,使输出约束可以直接处理,而不需要额外的努力来保证虚拟控制器的连续性和可微性。通过数值仿真验证了该方法的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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