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Derivation of Quaternary-Based Mathematical Operators to Manage Innovation in Complex Adaptive Systems

机译:复杂自适应系统中基于四元数的数学运算符来管理创新

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Organizations ranging from the Internet, to economies, to large global corporations, to rapidly changing technological ecosystems can be thought of as Complex Adaptive Systems (CAS). When viewed from the bottom-up, as is commonly the case, CAS is often characterized by distributed control, connectivity, co-evolution, emergence, and unpredictability. When viewed from the top-down, a view unique to the mathematical framework further developed in this paper, characteristics such as an implicit order, qualified determinism, and directional integrity emerge. There are advantages and a different management system required when CAS is viewed from the top-down. This paper will derive a series of mathematical operators representative of the quaternary basis of any CAS that can be used in the management of innovation of such CAS and suggest an application employing a series of operators to innovate in a representative rapidly evolving technological environment.
机译:从互联网到经济,大型跨国公司到快速变化的技术生态系统的组织都可以被视为复杂自适应系统(CAS)。从下至上看(通常是这样),CAS通常具有分布式控制,连通性,协同进化,出现和不可预测的特征。从上至下查看时,本文进一步发展了数学框架的独特观点,并出现了隐式顺序,限定性确定性和方向完整性等特征。从上到下查看CAS都有优点,并且需要不同的管理系统。本文将得出一系列代表任何CAS的四元基础的数学运算符,这些数学运算符可用于此类CAS的创新管理中,并提出一种在一系列迅速发展的技术环境中采用一系列运算符进行创新的应用程序。

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