Averting and Mitigating the Effects of Uncertainties with Optimal Control in Industrial Networked Control System

Brijraj Singh Solanki, R. Kumawat, S. Srinivasan
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引用次数: 0

Abstract

Emerging trends, development and growth of industrial-networked control systems (i-NCSs) with real-time communication network drive it more susceptible to malicious intended intrusion and attack. Due to numerous advantages such as reduced maintenance, ease to install, ease of diagnosis and system wiring draws attention to use in various industrial and critical fields. The control performance and robust stability of NCS is directly related to reliable and successful transmission of critical information’s. So in this paper an approach is illustrated to alleviate the effects and avert the unwanted intended intrusive data through the designing of stability conditions and optimized control policies. An unwanted intrusion effects also forced us to design a controlled system, which is hard to be estimated by attackers, through the applications of optimization algorithms.
用最优控制避免和减轻工业网络控制系统中的不确定性影响
具有实时通信网络的工业网络控制系统(i-NCSs)的新兴趋势,发展和增长使其更容易受到恶意入侵和攻击。由于减少维护,易于安装,易于诊断和系统布线等众多优点,引起了人们对各种工业和关键领域的关注。网络控制系统的控制性能和鲁棒稳定性直接关系到关键信息的可靠和成功传输。因此,本文阐述了一种通过设计稳定条件和优化控制策略来减轻影响和避免不必要的预期数据干扰的方法。由于入侵效应的存在,我们不得不通过优化算法的应用来设计一个难以被攻击者估计的可控系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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