A simulation model of self-organising evolvability in software systems

S. Cook, R. Harrison, P. Wernick
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引用次数: 18

Abstract

The evolvability of a software artifact is its capacity for producing heritable or reusable variants; the inverse quality is the artifact's inertia or resistance to evolutionary change. Evolvability in software systems may arise from engineering and/or self-organising processes. We describe our 'conditional growth' simulation model of software evolution and show how it can be used to investigate evolvability from a self-organisation perspective. The model is derived from the Bak-Sneppen family of 'self-organised criticality' simulations. It shows good qualitative agreement with Lehman's 'laws of software evolution' and reproduces phenomena that have been observed empirically. The model suggests interesting predictions about the dynamics of evolvability and implies that much of the observed variability in software evolution can be accounted for by comparatively simple self-organising processes.
软件系统自组织演化的模拟模型
软件工件的可演化性是它产生可继承或可重用变体的能力;逆质量是工件对进化变化的惯性或抵抗。软件系统的可发展性可能来自工程和/或自组织过程。我们描述了软件进化的“条件增长”模拟模型,并展示了如何从自组织的角度来研究可进化性。该模型来源于baker - sneppen家族的“自组织临界”模拟。它与雷曼的“软件进化定律”表现出良好的定性一致,并再现了经验观察到的现象。该模型提出了关于可进化性动力学的有趣预测,并暗示在软件进化中观察到的许多可变性可以用相对简单的自组织过程来解释。
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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