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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >H_∞ controller design for a class of switched linear discrete-time system with polytopic uncertainties
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H_∞ controller design for a class of switched linear discrete-time system with polytopic uncertainties

机译:一类具有多变量不确定性的线性切换离散系统的H_∞控制器设计

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摘要

In this article, a new parameter-dependent stability criterion for switched linear discrete-time systems with polytopic uncertainties is provided to correct an error occurring in previous work, and the parameter-dependent idea is extended to e_2 gain analysis problem. Particularly, a less conservative result is proposed by introducing additional slack matrices. Furthermore, the H_∞ control problem is investigated. Due to the online calculation characteristic of parameter-dependent controller, a controller structure with less computation cost is of interest. Aside from the controller with the same form as in some existing results involving matrix multiplication and inversion operators, another simple structure of controller formulated by a convex combination of a set of matrices is proposed, which can reduce the online computation cost significantly. A numerical example and results of simulation performed on the model of two-mass-spring mechanical system are provided to illustrate the theoretical findings within this article.
机译:在本文中,为多线性不确定性的切换线性离散时间系统提供了新的参数相关的稳定性准则,以纠正先前工作中出现的误差,并将参数相关的思想扩展到e_2增益分析问题。特别地,通过引入额外的松弛矩阵,提出了一个不太保守的结果。此外,研究了H_∞控制问题。由于参数相关控制器的在线计算特性,因此具有较低计算成本的控制器结构受到关注。除了具有与某些涉及矩阵乘法和求逆算子的现有结果相同的形式的控制器外,还提出了由一组矩阵的凸组合构成的控制器的另一种简单结构,可以显着降低在线计算成本。提供了一个数值示例和对两弹簧机械系统模型进行仿真的结果,以说明本文中的理论发现。

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