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Design of stabilizing controllers of upper triangular nonlinear time-delay systems

机译:上三角非线性时滞系统的稳定控制器设计

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In this paper, it is considered the state feedback controller design for a class of upper triangular nonlinear systems with simultaneous input and state delays. By using the state transformation of nonlinear systems, the problem of designing controller can be converted into that of designing a dynamic parameter, which is dynamically regulated by a dynamic equation. Then, by appraising the nonlinear terms of the given systems, a dynamic equation can be delicately constructed. At last, with the help of Lyapunov stability theorem, it is provided the stability analysis for the closed-loop system consisting of the designed controller and the given systems. Both discrete delays and continuous delays with integral form are considered here. Different from many existing control designs for upper triangular nonlinear systems, neither forwarding recursive nor saturation computation is utilized here, and thus our design procedure is simpler. A simulation example is given to demonstrate the effectiveness of the proposed design procedure. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文考虑一类同时具有输入和状态延迟的上三角非线性系统的状态反馈控制器设计。通过使用非线性系统的状态变换,可以将设计控制器的问题转换为设计动态参数的问题,该参数由动态方程式动态调节。然后,通过评估给定系统的非线性项,可以精细地构造一个动力学方程。最后,借助李雅普诺夫稳定性定理,为由所设计的控制器和给定系统组成的闭环系统提供了稳定性分析。此处考虑离散延迟和具有整数形式的连续延迟。与许多现有的用于上三角非线性系统的控制设计不同,这里既不使用前向递归也不使用饱和度计算,因此我们的设计过程更加简单。给出了一个仿真实例,以证明所提出的设计程序的有效性。 (C)2014 Elsevier B.V.保留所有权利。

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