解决工业控制系统问题的确定性方法

A. Baybulatov, V. Promyslov
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引用次数: 2

摘要

自古以来,排队和延误一直是人类日常生活中令人恼火的现实。今天,它们无处不在地追赶我们:在技术、社会、社会技术甚至控制系统中,它们的表现急剧恶化。在这种情况下,计算机系统肯定会在我们的数字时代引起越来越多的焦虑。虽然对于我们日常上网来说,经历长时间和恼人的延迟是一种不愉快但并不危险的情况,但对于工业控制系统,特别是那些处理关键基础设施的系统,这种行为是不可接受的。本文提出了一种确定性方法来解决与延迟和积压相关的数字控制系统问题。与排队论的统计方法相比,它基于网络演算,提供了最坏情况的结果,这对于关键基础设施来说是非常可取的。本文涵盖了确定性排队系统理论的基础,网络演算,其关于积压边界和延迟之间关系的演变,以及处理经验数据的技术。通过确定性方法解决的问题:网络性能度量的标准计算,数据库最大更新时间的估计,以及网络安全评估,包括诸如CIA三合会表示,操作技术影响以及关注其与延迟相关性的可用性理解等问题,也进行了深入讨论。
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On a Deterministic Approach to Solving Industrial Control System Problems
Since remote ages, queues and delays have been a rather exasperating reality of human daily life. Today, they pursue us everywhere: in technical, social, socio-technical, and even control systems, dramatically deteriorating their performance. In this variety, it is the computer systems that are sure to cause the growing anxiety in our digital era. Although for our everyday Internet surfing, experiencing long-lasting and annoying delays is an unpleasant but not dangerous situation, for industrial control systems, especially those dealing with critical infrastructures, such behavior is unacceptable. The article presents a deterministic approach to solving some digital control system problems associated with delays and backlogs. Being based on Network calculus, in contrast to statistical methods of Queuing theory, it provides worst-case results, which are eminently desirable for critical infrastructures. The article covers the basics of a theory of deterministic queuing systems Network calculus, its evolution regarding the relationship between backlog bound and delay, and a technique for handling empirical data. The problems being solved by the deterministic approach: standard calculation of network performance measures, estimation of database maximum updating time, and cybersecurity assessment including such issues as the CIA triad representation, operational technology influence, and availability understanding focusing on its correlation with a delay are thoroughly discussed as well.
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