Physical Computation as Dynamics of Form that Glues Everything Together

Gordana Dodig Crnkovic
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引用次数: 36

Abstract

The framework is proposed where matter can be seen as related to energy in a way structure relates to process and information relates to computation. In this scheme matter corresponds to a structure, which corresponds to information. Energy corresponds to the ability to carry out a process, which corresponds to computation. The relationship between each two complementary parts of each dichotomous pair (matter/energy, structure/process, information/computation) are analogous to the relationship between being and becoming, where being is the persistence of an existing structure while becoming is the emergence of a new structure through the process of interactions. This approach presents a unified view built on two fundamental ontological categories: Information and computation. Conceptualizing the physical world as an intricate tapestry of protoinformation networks evolving through processes of natural computation helps to make more coherent models of nature, connecting non-living and living worlds. It presents a suitable basis for incorporating current developments in understanding of biological/cognitive/social systems as generated by complexification of physicochemical processes through self-organization of molecules into dynamic adaptive complex systems by morphogenesis, adaptation and learning— all of which are understood as information processing.
物理计算是将一切粘合在一起的形式动力学
在这个框架中,物质可以被视为与能量相关,就像结构与过程相关,信息与计算相关一样。在这个方案中,物质对应于一个结构,而结构对应于信息。能量对应于执行一个过程的能力,这个过程对应于计算。每一对二分法(物质/能量,结构/过程,信息/计算)中每两个互补部分之间的关系类似于存在与生成之间的关系,其中存在是现有结构的持续存在,而生成是通过相互作用过程产生的新结构。这种方法提出了建立在两个基本本体论范畴上的统一视图:信息和计算。将物理世界概念化为一个复杂的原始信息网络织锦,通过自然计算的过程进化,有助于建立更连贯的自然模型,将非生物世界和生物世界联系起来。它提供了一个合适的基础,将当前对生物/认知/社会系统的理解发展结合起来,这些系统是由物理化学过程的复杂化产生的,通过分子的自组织,通过形态发生、适应和学习,形成动态适应的复杂系统——所有这些都被理解为信息处理。
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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