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关于进化系统。

On evolutionary systems.

作者信息

Alvarez de Lorenzana J M, Ward L M

机构信息

Universidad Complutense, Madrid, Spain.

出版信息

Behav Sci. 1987 Jan;32(1):19-33. doi: 10.1002/bs.3830320104.

Abstract

This paper develops a metatheoretical framework for understanding evolutionary systems (systems that develop in ways that increase their own variety). The framework addresses shortcomings seen in other popular systems theories. It concerns both living and nonliving systems, and proposes a metahierarchy of hierarchical systems. Thus, it potentially addresses systems at all descriptive levels. We restrict our definition of system to that of a core system whose parts have a different ontological status than the system, and characterize the core system in terms of five global properties: minimal length interval, minimal time interval, system cycle, total receptive capacity, and system potential. We propose two principles through the interaction of which evolutionary systems develop. The Principle of Combinatorial Expansion describes how a core system realizes its developmental potential through a process of progressive differentiation of the single primal state up to a limit stage. The Principle of Generative Condensation describes how the components of the last stage of combinatorial expansion condense and become the environment for and components of new, enriched systems. The early evolution of the Universe after the "big bang" is discussed in light of these ideas as an example of the application of the framework.

摘要

本文构建了一个元理论框架,用于理解进化系统(即以增加自身多样性的方式发展的系统)。该框架解决了其他流行系统理论中存在的缺陷。它既涉及生命系统,也涉及非生命系统,并提出了层次系统的元层次结构。因此,它有可能适用于所有描述层次的系统。我们将系统的定义限制为一个核心系统,其组成部分与系统具有不同的本体论地位,并从五个全局属性来描述核心系统:最小长度间隔、最小时间间隔、系统周期、总接受能力和系统潜能。我们提出了两条进化系统通过其相互作用而发展的原则。组合扩展原则描述了核心系统如何通过单一原始状态的渐进分化过程直至极限阶段来实现其发展潜能。生成凝聚原则描述了组合扩展最后阶段的组成部分如何凝聚并成为新的、丰富系统的环境和组成部分。作为该框架应用的一个例子,本文根据这些观点讨论了“大爆炸”后宇宙的早期演化。

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