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ISOMORPHOLOGICAL ANALYSIS: THE THEORY OF IT ALL

机译:地貌分析:全部理论

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Complex systems concepts can be traced back to the philosophy of G.W. Leibiniz and Nicholas Cusa, and during the 19th century a systems approach was introduced into the hard sciences of energy transformation and thermodynamics. Current General Systems Theory was developed from the work of Ludwig von Bertalanffy and others. Due to the existence of general system properties the appearance of structural similarities or isomorphism's in different fields occur. In many cases, isomorphic laws hold for certain classes or subclasses of 'systems', irrespective of the nature of the entities involved. There appear to be general system laws which apply to any system of a certain type, irrespective if the particular properties of the system and of the elements involved. The reality of today's environment is one of complexity, self-organizations, connectionism and adaptive systems in all fields of research in General Systems Theory. Bertalanffy understood that identifying isomorphologies between complex systems improved the probabilities of better understanding systems complexities in any one system. The purpose of this paper is to identify and present a methodological structure for systemic isomorphological analysis to assist systems theory and engineering management researchers, students and practioners, to address the identification, application and analysis of complex systems isomorphologies.
机译:复杂系统的概念可以追溯到G.W.的理念Leibiniz和Nicholas库萨和19世纪期间,系统方法引入节能改造和热力学的硬科学。目前一般系统理论是从贝塔朗菲和他人的工作发展。由于一般的系统属性的存在发生的结构相似性或同构的不同领域的外观。在许多情况下,同构的法律持有某些类别或“系统”的子类,不论实体的性质有关。似乎有适用于某种类型的任何系统一般系统的法律,不论如果系统和元件的具体特性参与。今天的环境的现实是,在一般系统理论研究的各个领域的复杂性,自组织,联结和自适应系统之一。贝塔朗菲理解的是,复杂的系统之间的识别isomorphologies改进更好地理解系统的复杂性的概率中的任何一个系统中。本文的目的是确定并提出一个方法结构系统isomorphological分析,协助系统理论和工程管理的研究人员,学生和从业人员,解决复杂系统isomorphologies识别,应用程序和分析。

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