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Input constrained non-equilibrium transient trajectory shaping via a three-stage control method for a class of non-linear systems

机译:通过三阶段控制方法对一类非线性系统进行输入约束的非平衡瞬态轨迹整形

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摘要

This study deals with the non-equilibrium transient trajectory shaping problem for non-linear, strict feedback, single-input??single-output systems by a three-stage switching control method. Through this control method, the non-linear system output tracking error can be constrained within a set of properly pre-designed boundaries when it is converging to the equilibrium point. In particular, the three-stage switching control method imposes a constant bound (the first stage), two exponentially converging time-varying functions (the second stage), and a smaller constant bound (the third stage) as the tracking error boundary in each of the three stages, respectively. By designing control laws separately in the corresponding stages, the trajectory of the system tracking error can be assured within the boundaries during transient period. The bound of the control input magnitude can be determined with the respective control law at each stage and consequently establish the tradeoff between system transient performance and the available control resource. Numerical examples are utilised to show the effectiveness of the technique.
机译:本研究通过三阶段切换控制方法处理非线性,严格反馈,单输入单输出系统的非平衡瞬态轨迹整形问题。通过这种控制方法,当非线性系统输出跟踪误差收敛到平衡点时,可以将其限制在一组适当的预先设计的边界内。特别地,三级切换控制方法在每一个中都规定了一个恒定边界(第一阶段),两个指数收敛的时变函数(第二阶段)和一个较小的恒定边界(第三阶段)作为跟踪误差边界。三个阶段中的一个。通过在相应阶段分别设计控制律,可以在过渡期间确保边界内系统跟踪误差的轨迹。可以在每个阶段根据各自的控制规律确定控制输入幅度的界限,从而在系统暂态性能和可用控制资源之间建立折衷方案。数值例子表明了该技术的有效性。

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  • 来源
    《Control Theory & Applications, IET》 |2012年第3期|p.375-383|共9页
  • 作者

    Yan F.; Wang J.;

  • 作者单位

    Department of Mechanical and Aerospace Engineering,The Ohio State University, Columbus, OH 43210, USA;

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  • 正文语种 eng
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