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Static Output-Feedback Simultaneous Stabilization of Interval Time-Delay Systems

机译:间隔时滞系统的静态输出反馈同时稳定

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This paper addresses the problem of simultaneous static output-feedback stabilization of a collection of interval time-delay systems. It is shown that this problem can be converted into a matrix measure assignment problem. Sufficient conditions for guaranteeing the robust stability for considered systems are derived in term of the matrix measures of the system matrices. By using matrix inequalities, we provide two cases of obtaining a static output-feedback controller that can stabilize the system, i.e., both P = I and P≠I cases are considered where I is a identity matrix and P is a common positive definite matrix to guarantee the stability of the overall system. The sufficient condition with P = I is formulated in the format of linear matrix inequalities (LMIs). When P ≠ I is considered, the sufficient condition becomes a nonlinear matrix inequality problem and a heuristic iterative algorithm based on the LMI technique is presented to solve the coupled matrix inequalities. Finally, an example is provided to illustrate the effectiveness of our approach.
机译:本文解决了间隔时滞系统集合同时静态输出反馈稳定的问题。结果表明,该问题可以转化为矩阵度量分配问题。根据系统矩阵的矩阵度量,得出了保证所考虑系统的鲁棒稳定性的充分条件。通过使用矩阵不等式,我们提供两种情况来获得可以使系统稳定的静态输出反馈控制器,即,将P = I和P≠I都视为I是单位矩阵而P是公共正定矩阵的情况以保证整个系统的稳定性。 P = I的充分条件以线性矩阵不等式(LMI)的形式表示。当考虑P≠I时,充分条件成为非线性矩阵不等式问题,提出了一种基于LMI技术的启发式迭代算法来求解耦合矩阵不等式。最后,提供了一个例子来说明我们方法的有效性。

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