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l_1-induced norm and controller synthesis of positive systems

机译:l_1诱导的正系统范数和控制器合成

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摘要

In this paper, the problem of l_1-induced controller design for discrete-time positive systems is investigated with the use of linear Lyapunov function. An analytical method to compute the exact value of l_1-induced norm is first presented. Then, a novel characterization for stability and l_1-induced performance is proposed. Based on the characterization, a necessary and sufficient condition for the existence of desired controllers is derived, and an iterative convex optimization approach is developed to solve the condition. In addition, the synthesis of the state-feedback controller for single-input multiple-output (SIMO) positive systems is investigated. For this special case, an analytic solution is established to show how the optimal l_1-induced controller can be designed, and some links to the spectral radius of the closed-loop systems are provided. Finally, the theoretical results are illustrated through a numerical example.
机译:本文利用线性Lyapunov函数研究了离散时间正系统的l_1诱导控制器设计问题。首先提出了一种计算方法的精确方法,该方法可以计算出l_1诱导范数的精确值。然后,提出了一种新的表征稳定性和l_1诱导性能的方法。在此基础上,推导了所需控制器存在的充要条件,并提出了一种迭代凸优化方法来求解。此外,还研究了用于单输入多输出(SIMO)正系统的状态反馈控制器的综合。对于这种特殊情况,建立了一个解析解决方案以显示如何设计最佳的l_1感应控制器,并提供了一些与闭环系统的频谱半径的链接。最后,通过数值例子说明了理论结果。

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