这篇论文与多重时间延期为联网的控制系统(NCS ) 处理延期依赖者稳定性和稳定的问题。鉴于 multi-inputand 多产量(MIMO ) 有许多独立传感器和致动器的 NCS,有分布式的时间延期的一个连续时间模型被建议。利用 Lyapunov 稳定性理论把技术与线性矩阵不平等(LMI ) 相结合,为 NCS 的一些新延期依赖者稳定性标准以概括 Lyapunov 矩阵方程和 LMI 被导出。经由州的反馈稳定控制器被解决一套 LMI 提出。与报导方法相比,建议方法给不太保守的延期界限和更一般的结果。方法不太保守、更有效的数字例子和模拟表演。
This paper deals with the problem of delay-dependent stability and stabilization for networked control systems(NCSs)with multiple time-delays. In view of multi-input and multi-output(MIMO) NCSs with many independent sensors and actuators, a continuous time model with distributed time-delays is proposed. Utilizing the Lyapunov stability theory combined with linear matrix inequalities(LMIs) techniques, some new delay-dependent stability criteria for NCSs in terms of generalized Lyapunov matrix equation and LMIs are derived. Stabilizing controller via state feedback is formulated by solving a set of LMIs. Compared with the reported methods, the proposed methods give a less conservative delay bound and more general results. Numerical example and simulation show that the methods are less conservative and more effective.