Elahi Arezou, Alfi Alireza
Faculty of Electrical and Robotic Engineering, Shahrood University of Technology, Shahrood, Iran.
Faculty of Electrical and Robotic Engineering, Shahrood University of Technology, Shahrood, Iran.
ISA Trans. 2020 Feb;97:352-364. doi: 10.1016/j.isatra.2019.07.020. Epub 2019 Jul 17.
Communication channel in the control loop brings new challenging topics that cause the controller design for the system very complicated. Data packet dropout, delay and limited channel are the main inevitable problems that can significantly degrade the system performance. Besides, stability analysis of such systems over infinite time interval using the Lyapunov stability concept imposes significant restrictions in practice due to control input saturation. The purpose of this paper is to introduce a control algorithm for stabilizing the discrete-time networked cascade control systems to suppress the detrimental effects of limited channel, delay and data packet dropout by means of finite-time H control. Non-uniformly distributed nature of the delay together with packet dropout are modeled as a Bernoulli distributed white sequence. Finite-time boundedness and stochasticHfinite-time stability are demonstrated by designing a switching state-feedback controller. Simulations are given to show the proposed controller under the network imperfections.
控制回路中的通信通道带来了新的具有挑战性的课题,使得系统的控制器设计变得非常复杂。数据包丢失、延迟和有限信道是主要的不可避免的问题,它们会显著降低系统性能。此外,由于控制输入饱和,利用李雅普诺夫稳定性概念对这类系统在无限时间区间上进行稳定性分析在实际中存在显著限制。本文的目的是引入一种控制算法,通过有限时间H控制来稳定离散时间网络化级联控制系统,以抑制有限信道、延迟和数据包丢失的有害影响。将延迟的非均匀分布特性与数据包丢失建模为伯努利分布的白序列。通过设计切换状态反馈控制器来证明有限时间有界性和随机有限时间稳定性。给出了仿真结果以展示在网络不完善情况下所提出的控制器。