From Self-Adaptation to Self-Evolution Leveraging the Operational Design Domain

Danny Weyns, J. Andersson
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引用次数: 1

Abstract

Engineering long-running computing systems that achieve their goals under ever-changing conditions pose significant challenges. Self-adaptation has shown to be a viable approach to dealing with changing conditions. Yet, the capabilities of a self-adaptive system are constrained by its operational design domain (ODD), i.e., the conditions for which the system was built (requirements, constraints, and context). Changes, such as adding new goals or dealing with new contexts, require system evolution. While the system evolution process has been automated substantially, it remains human-driven. Given the growing complexity of computing systems, human-driven evolution will eventually become unmanageable. In this paper, we provide a definition for ODD and apply it to a self-adaptive system. Next, we explain why conditions not covered by the ODD require system evolution. Then, we outline a new approach for self-evolution that leverages the concept of ODD, enabling a system to evolve autonomously to deal with conditions not anticipated by its initial ODD. We conclude with open challenges to realise self-evolution.
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从自适应到自进化利用操作设计领域
工程长期运行的计算系统在不断变化的条件下实现其目标提出了重大挑战。自我适应已被证明是应对不断变化的条件的一种可行方法。然而,自适应系统的能力受到其操作设计域(ODD)的约束,即系统被构建的条件(需求、约束和上下文)。变更,例如添加新目标或处理新上下文,需要系统演进。虽然系统演化过程已经基本上自动化了,但它仍然是人为驱动的。考虑到计算系统日益复杂,人类驱动的进化最终将变得难以控制。本文给出了ODD的定义,并将其应用于自适应系统。接下来,我们解释为什么ODD未涵盖的条件需要系统演化。然后,我们概述了一种新的自我进化方法,该方法利用ODD的概念,使系统能够自主进化,以处理其初始ODD未预料到的条件。最后,我们提出了实现自我进化的公开挑战。
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