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Applying Systems and Safety Engineering Principles for Antifragility

机译:防脆弱性的应用系统和安全工程原理

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Traditional systems engineering can be seen as a range of activities and techniques aiming at developing a system (or product) in a systematic and predictable way. In particular safety engineering standards aim at developing “safe” systems that continue to provide their intended behaviour even when faults or hazards occur. Often, the approach will be relatively static and the aim will be to mitigate the analysed risks as this is the easiest way to verify the safety property. Antifragile systems [10] however are defined as systems that adapt after a fault occurs and are not only resilient but also learn from faults and incidents to improve their delivered service level. This paper investigates antifragility in the context of systems engineering and proposes a normative criterion that helps to understand the pre-conditions reaching antifragility.
机译:传统的系统工程可以看作是一系列旨在以系统和可预测的方式开发系统(或产品)的活动和技术。特别是安全工程标准旨在开发“安全”系统,即使在发生故障或危险时也能继续提供预期的行为。通常,该方法是相对静态的,目标是减轻已分析的风险,因为这是验证安全性的最简单方法。然而,抗脆弱系统[10]被定义为在故障发生后可以适应的系统,不仅具有弹性,而且还可以从故障和事件中学习以提高其交付的服务水平。本文在系统工程的背景下研究了抗脆弱性,并提出了有助于理解达到抗脆弱性的先决条件的规范标准。

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