Robustness against misuse - a new attribute of technical systems

Z. Vintr, D. Valis
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引用次数: 1

Abstract

Operation of a number of technical systems is related to the danger of events' occurrence posing threat to human health and life, resulting in material damage or damage to the environment. Methods and procedures used for risk management take into consideration also a failure of a human factor as a possible cause of dangerous events' occurrence, but they do not give us opportunity to take into account a possible intention of man who can cause a dangerous event on purpose. In view of the terrorist threat we lack a coherent methodology which would enable us to influence system ability so that it could reduce its consequences or it could be protected against misuse by its design solution. This ability of a system is called robustness against misuse. The article presents fundamental approaches of new methodology which enable us to specify systems' robustness requirements, to describe and classify “weak” points of the systems, to analyze and assess robustness level, and to find and suggest effective ways of increasing the systems' robustness against misuse. The presented methodology is based on the assumption that similarly, as in case of dependability and safety, the assurance of system robustness should be also an object of systematic attention in all phases of the system life cycle, and that the system robustness against misuse is formed in a crucial manner mainly in the early phases of a life cycle (so called premanufacturing stages - conception, development, design).
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抗误用的健壮性——技术系统的新属性
一些技术系统的运行涉及到威胁人类健康和生命的事件发生的危险,造成物质损害或环境破坏。用于风险管理的方法和程序也考虑到人为因素的失败是危险事件发生的可能原因,但它们没有给我们机会考虑可能故意造成危险事件的人的意图。鉴于恐怖主义威胁,我们缺乏一种连贯的方法,使我们能够影响系统能力,从而减少其后果,或者通过其设计解决方案保护系统免受滥用。系统的这种能力被称为抗误用的健壮性。本文介绍了新方法的基本方法,使我们能够指定系统的鲁棒性需求,描述和分类系统的“弱点”,分析和评估鲁棒性水平,并发现和建议有效的方法来增加系统的鲁棒性,防止误用。所提出的方法是基于这样的假设:类似地,在可靠性和安全性的情况下,系统稳健性的保证也应该是系统生命周期的所有阶段系统关注的对象,并且系统抗误用的稳健性主要在生命周期的早期阶段(所谓的预制造阶段-概念,开发,设计)以关键的方式形成。
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