Ali Muhammad Ahsen, Iqbal Naeem, Rehan Muhammad
Department of Electrical Engineering, Pakistan Institute of Engineering and Applied Sciences (PIEAS), Islamabad, Pakistan.
ISA Trans. 2024 Jun;149:26-43. doi: 10.1016/j.isatra.2024.04.021. Epub 2024 Apr 22.
This paper studies the control problem for a continuous-time networked system with non-linearity in the state equation as well as in the input, as saturation. The system is considered under denial-of-service (DoS), attacks which cause the blockage of input and/or output components in the overall closed-loop model. An event-triggering scheme that is resilient in nature, along with an observer-based control, has been considered under DoS attacks. The resultant scheme ensures efficient network resources and excludes Zeno behavior naturally due to the presence of a minimum positive interevent delay. Then, an event-based switched non-linear model is presented to address both the event-triggering scheme and the presence of DoS blocking attacks. A piece-wise Lyapunov-Krasovskii functional method on the described non-linear model, resulting in the switched system, is considered for achieving an exponentially stable response by driving the required feasibility conditions. In the presence of a non-linear system with saturation in the actuator, the presented design establishes quantitative relationships among the exponential decay rate, active/sleeping intervals of attacks, parameters of the event-triggering condition, and sampling period of the system. After that, linear matrix inequalities are presented for designing an event-triggered controller with an observer, while the design also includes the region of convergence for dealing with the input non-linearity. Finally, comparative results for an offshore structure model with non-linearity in states as well as in actuator, are demonstrated to verify the results of the control scheme that is developed. It has been verified that our design is less conservative than the previous designs, and can handle the non-linearities in the dynamics of plant and actuator saturation more efficiently, while DoS attacks are also present. By applying our proposed method, the overshoot and undershoot are less than ±2.5 percent, while system states converge to the origin within 55 s.
本文研究了一个连续时间网络系统的控制问题,该系统的状态方程和输入中均存在非线性,如饱和现象。该系统被置于拒绝服务(DoS)攻击的情况下进行考虑,这种攻击会导致整个闭环模型中的输入和/或输出组件被阻塞。在DoS攻击下,考虑了一种本质上具有弹性的事件触发机制以及基于观测器的控制。由此产生的机制确保了网络资源的高效利用,并且由于存在最小正事件间隔延迟,自然地排除了芝诺行为。然后,提出了一种基于事件的切换非线性模型,以解决事件触发机制和DoS阻塞攻击的存在问题。针对所描述的非线性模型,考虑采用分段Lyapunov-Krasovskii泛函方法来得到切换系统,通过驱动所需的可行性条件来实现指数稳定响应。在存在执行器饱和的非线性系统的情况下,所提出的设计建立了指数衰减率、攻击的活跃/休眠间隔、事件触发条件的参数以及系统采样周期之间的定量关系。之后,提出了线性矩阵不等式来设计带观测器的事件触发控制器,同时该设计还包括用于处理输入非线性的收敛区域。最后,给出了一个状态和执行器均存在非线性的海洋结构模型的对比结果,以验证所开发控制方案的结果。已经验证,我们的设计比以前的设计保守性更低,并且在存在DoS攻击的情况下,能够更有效地处理对象动态特性中的非线性和执行器饱和问题。通过应用我们提出的方法,超调量和欠调量小于±2.5%,而系统状态在55秒内收敛到原点。