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The semiotics of control and modeling relations in complex systems

机译:复杂系统中控制和建模关系的符号学

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摘要

We provide a conceptual analysis of ideas and principles from the systems theory discourse which underlie Pattee's semantic or semiotic closure, which is itself foundational for a school of theoretical biology derived from systems theory and cybernetics. and is now being related to biological semiotics and explicated in the relational biological school of Rashevsky and Rosen. Atomic control systems and models are described as the canonical forms of semiotic organization, sharing measurement relations, but differing topologically in that control systems are circularly and models linearly related to their environments. Computation in control systems is introduced, motivating hierarchical decomposition, hybrid modeling and control systems, and anticipatory or model-based control. The semiotic relations in complex control systems are described in terms of relational constraints, and rules and laws are distinguished as contingent and necessary functional entailments, respectively. Finally, selection as a meta-level of constraint is introduced as the necessary condition for semantic relations in control systems and models. (C) 2001 Elsevier Science ireland Ltd. All rights reserved. [References: 48]
机译:我们从基于Pattee语义或符号封闭的系统理论话语中对思想和原理进行概念分析,而后者本身是从系统理论和控制论派生的理论生物学流派的基础。现在与生物学符号学有关,并在Rashevsky和Rosen的关系生物学流派中有所阐述。原子控制系统和模型被描述为符号化组织的规范形式,共享度量关系,但是在拓扑结构上不同之处在于,控制系统是循环的,并且模型与其环境线性相关。引入了控制系统中的计算,从而促进了层次分解,混合建模和控制系统以及预期的或基于模型的控制。复杂控制系统中的符号关系是根据关系约束来描述的,而规则和法则则分别被视作是偶然条件和必要功能。最后,引入选择作为约束的元级别,作为控制系统和模型中语义关系的必要条件。 (C)2001 Elsevier科学爱尔兰有限公司。保留所有权利。 [参考:48]

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