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Formal Definitions of Unbounded Evolution and Innovation Reveal Universal Mechanisms for Open-Ended Evolution in Dynamical Systems

机译:无界演化和创新的形式化定义揭示了动力系统中开放式演化的通用机制

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摘要

abstract: Open-ended evolution (OEE) is relevant to a variety of biological, artificial and technological systems, but has been challenging to reproduce in silico. Most theoretical efforts focus on key aspects of open-ended evolution as it appears in biology. We recast the problem as a more general one in dynamical systems theory, providing simple criteria for open-ended evolution based on two hallmark features: unbounded evolution and innovation. We define unbounded evolution as patterns that are non-repeating within the expected Poincare recurrence time of an isolated system, and innovation as trajectories not observed in isolated systems. As a case study, we implement novel variants of cellular automata (CA) where the update rules are allowed to vary with time in three alternative ways. Each is capable of generating conditions for open-ended evolution, but vary in their ability to do so. We find that state-dependent dynamics, regarded as a hallmark of life, statistically out-performs other candidate mechanisms, and is the only mechanism to produce open-ended evolution in a scalable manner, essential to the notion of ongoing evolution. This analysis suggests a new framework for unifying mechanisms for generating OEE with features distinctive to life and its artifacts, with broad applicability to biological and artificial systems.
机译:摘要:开放式进化(OEE)与多种生物,人工和技术系统有关,但是在计算机模拟中进行复制一直存在挑战。大多数理论上的努力都集中在生物学中出现的开放式进化的关键方面。我们将问题重塑为动力学系统理论中的一个更通用的问题,它基于两个标志性特征(即无限制的演化和创新)为开放式演化提供了简单的标准。我们将无界进化定义为在孤立系统的预期Poincare复发时间内不重复的模式,将创新定义为在孤立系统中未观察到的轨迹。作为案例研究,我们实现了细胞自动机(CA)的新颖变体,其中更新规则以三种替代方式随时间变化。每个人都有能力为开放式进化创造条件,但其能力却有所不同。我们发现,状态相关的动力学被视为生命的标志,在统计上优于其他候选机制,并且是唯一以可扩展的方式产生开放式演化的机制,这对于正在进行的演化的概念至关重要。该分析提出了一个统一的框架,以统一机制来产生具有生命和人工产物特征的OEE,并广泛应用于生物和人工系统。

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