工业信息物理系统抗网络攻击的1阶光滑显式时间非奇异终端滑模控制

Wen Yan;Tao Zhao;Haixin Yang;Xin Wang;Ben Niu
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引用次数: 0

摘要

在现有的针对网络攻击的工业网络物理系统(icps)终端滑模跟踪控制器设计中,由于存在奇异性问题,无法同时确定收敛时间和跟踪精度。针对随机注入攻击下的icps系统,提出了一种新的显式非奇异终端滑模控制(TSMC)方法。首先,建立了一种新的1阶光滑对称系统结构来构造显式时间稳定系统。它在稳态边界处是1阶光滑的。然后从狭义、广义和实用三个方面分析了显式时间终端滑模标称控制器的奇异性。最后,在上述分析的基础上,提出了一种新的二阶非奇异显式TSMC方法,该方法不需要耗费收敛时间和精度。与其他相关方法相比,该方法具有更好的可控收敛性能和更平滑的控制输入。通过仿真和实验验证了理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
1-Order-Smooth Explicit-Time Nonsingular Terminal Sliding Mode Control of Industrial Cyber-Physical Systems Against Cyber-Attacks
In the existing terminal sliding mode tracking controller design of the industrial cyber-physical systems (ICPSs) against cyber-attacks, the convergence time and tracking precision can not be predefined simultaneously due to singular problem. To solve this problem, for ICPSs under randomly occurring injection attacks, this paper presented a novel explicit-time nonsingular terminal sliding mode control (TSMC) method. Firstly, a novel 1-order-smooth symmetric system structure was found to construct an explicit-time stable system. It was 1-order-smooth at the steady-state boundary. Then, the singularity of the explicit-time terminal sliding mode nominal controller was analyzed from three aspects: narrow sense, broad sense and practical sense. Finally, based on above analysis, a novel 2-order nonsingular explicit-time TSMC method for ICPSs was proposed without the cost of convergence time and precision. Compared with other related methods, this method had more controllable convergence performance and smoother control input. Theoretical results were verified by simulation and experiment.
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