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Rethinking evolution, entropy and economics: A triadic conceptual framework for the maximum entropy principle as applied to the growth of knowledge

机译:重新思考进化,熵和经济学:应用于知识增长的最大熵原理的三元概念框架

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摘要

Recently, the maximum entropy principle has been applied to explain the evolution of complex non-equilibrium systems, such as the Earth system. I argue that it can also be fruitfully deployed to reconsider the classical treatment of entropy in economics by Georgescu-Roegen, if the growth of knowledge is seen as a physical process. Relying on central categories of Peirce's theory of signs, I follow the lines of a naturalistic evolutionary epistemology. In this framework, the three principles of Maximum Entropy (Jaynes), Maximum Power (Lotka) and Maximum Entropy Production can be arranged in a way such that evolution can be conceived as a process that manifests the physical tendency to maximize information generation and information capacity. This implies that the growth of knowledge is the dual of the process of entropy production. This theory matches with recent empirical research showing that economic growth can be tracked by measures of the throughput of useful work, mediated by the thermodynamic efficiency of the conversion of exergy into useful work.
机译:最近,最大熵原理已被用于解释复杂的非平衡系统(例如地球系统)的演化。我认为,如果知识的增长被视为一个物理过程,那么它也可以有效地用于重新考虑乔治·斯凯·罗根(Georgescu-Roegen)对经济学的熵的经典处理。依靠皮尔斯标志理论的中心类别,我遵循自然主义进化认识论的思路。在此框架中,最大熵(Jaynes),最大功率(洛特卡(Lotka))和最大熵产生的三个原理可以通过某种方式进行安排,以便可以将进化构想成一个过程,该过程体现了最大限度地提高信息生成和信息容量的物理趋势。 。这意味着知识的增长是熵产生过程的对偶。该理论与最近的实证研究相吻合,实证研究表明经济增长可以通过对有用工作量的度量来跟踪,而有效工作量的衡量是由火用转化为有用工作的热力学效率来介导的。

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  • 作者

    Herrmann-Pillath Carsten;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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