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Adaptive robust stabilisation for a class of uncertain nonlinear time-delay dynamical systems

机译:一类不确定非线性时滞动力系统的自适应鲁棒镇定

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摘要

The problem of adaptive robust stabilisation is considered for a class of uncertain nonlinear dynamical systems with multiple time-varying delays. It is assumed that the upper bounds of the nonlinear delayed state perturbations are unknown and that the time-varying delays are any non-negative continuous and bounded functions which do not require that their derivatives have to be less than one. In particular, it is only required that the nonlinear uncertainties, which can also include time-varying delays, are bounded in any non-negative nonlinear functions which are not required to be known for the system designer. For such a class of uncertain nonlinear time-delay systems, a new method is presented whereby a class of continuous memoryless adaptive robust state feedback controllers with a rather simpler structure is proposed. It is also shown that the solutions of uncertain nonlinear time-delay systems can be guaranteed to be uniformly exponentially convergent towards a ball which can be as small as desired. Finally, as an application, an uncertain nonlinear time-delay ecosystem with two competing species is given to demonstrate the validity of the results.
机译:对于一类具有多个时变时滞的不确定非线性动力学系统,考虑了自适应鲁棒镇定问题。假定非线性延迟状态扰动的上限是未知的,并且时变延迟是任何非负连续有界函数,不需要其导数必须小于1。特别是,仅要求非线性不确定性(也可以包括随时间变化的延迟)限制在系统设计人员不需要知道的任何非负非线性函数中。针对这类不确定的非线性时滞系统,提出了一种新的方法,提出了一种结构较为简单的连续无记忆自适应鲁棒状态反馈控制器。还表明,不确定的非线性时滞系统的解可以保证均匀地按指数收敛于球,该球可以尽可能地小。最后,作为一种应用,给出了具有两个竞争物种的不确定非线性时滞生态系统,以证明结果的有效性。

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