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Unification of Epistemic and Ontic Concepts of Information, Probability, and Entropy, Using Cognizers-System Model

机译:使用Cognizers系统模型统一信息,概率和熵的认识论和本体论概念

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Information and probability are common words used in scientific investigations. However, information and probability both involve epistemic (subjective) and ontic (objective) interpretations under the same terms, which causes controversy within the concept of entropy in physics and biology. There is another issue regarding the circularity between information (or data) and reality: The observation of reality produces phenomena (or events), whereas the reality is confirmed (or constituted) by phenomena. The ordinary concept of information presupposes reality as a source of information, whereas another type of information (known as it-from-bit ) constitutes the reality from data (bits). In this paper, a monistic model, called the cognizers-system model (CS model), is employed to resolve these issues. In the CS model, observations (epistemic) and physical changes (ontic) are both unified as “cognition”, meaning a related state change. Information and probability, epistemic and ontic, are formalized and analyzed systematically using a common theoretical framework of the CS model or a related model. Based on the results, a perspective for resolving controversial issues of entropy originating from information and probability is presented.
机译:信息和概率是科学研究中常用的词。但是,信息和概率在相同的术语下都涉及认知的(主观的)和本体的(客观的)解释,这在物理学和生物学的熵概念内引起了争议。关于信息(或数据)与现实之间的循环性还有另一个问题:对现实的观察会产生现象(或事件),而现实是由现象确认(或构成)的。普通的信息概念将现实作为信息的来源,而另一种信息(称为位)则由数据(位)构成现实。在本文中,采用了一个称为cognizers-system模型(CS模型)的一元模型来解决这些问题。在CS模型中,观测值(病因)和物理变化(本体论)都统一为“认知”,这意味着相关的状态变化。使用CS模型或相关模型的通用理论框架对信息和概率(认识论和本体论)进行形式化和分析。根据结果​​,提出了一种解决有争议的信息和概率熵问题的观点。

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