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Event-triggered sliding mode control of discrete-time two-dimensional systems in Roesser model

机译:鲁塞尔模型中离散时间二维系统的事件触发的滑动模式控制

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摘要

In this paper, the event-triggered sliding mode control (SMC) strategy for the discrete-time two-dimensional (2-D) Roesser systems with disturbances is proposed. First of all, the new horizontal and vertical linear sliding surface functions combined with the event-triggering scheme are constructed for the 2-D Roesser system, respectively. Next, sufficient conditions for the existence of the developed sliding surface functions are established. Then the event-triggered sliding mode control laws are designed by two different approaches: the Lyapunov function technique and the reaching law approach, such that the state trajectories of the resultant closed-loop 2-D system are driven into a bounded region and maintained there all time. Finally, the simulation results are given to show the design method and performance of the 2-D system under the proposed event-triggered SMC strategy. The main advantage is that the event-triggering based SMC strategy for 2-D systems is first proposed by taking the particular 2-D system property into account and this contributes to the event-triggered control (ETC) and SMC research for a general 2-D system. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了具有干扰的离散时间二维(2-D)鲁塞尔系统的事件触发的滑动模式控制(SMC)策略。首先,新的水平和垂直线性滑动表面功能与事件触发方案分别用于2-D roesser系统。接下来,建立了存在开发的滑动表面功能的充分条件。然后,事件触发的滑动模式控制法由两种不同的方法设计:Lyapunov函数技术和到达法方法,使得所得闭环2-D系统的状态轨迹被驱动到有界区域并保持在那里整天。最后,仿真结果是在提出的事件触发的SMC策略下显示了二维系统的设计方法和性能。主要优点是首先通过考虑特定的2-D系统属性来提出基于事件触发的二维系统SMC策略,这有助于将事件触发的控制(ETC)和SMC研究有助于一般2 -D系统。 (c)2020 elestvier有限公司保留所有权利。

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