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Natural Complexification of Systems by Integration of Their Environment

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Current Topics in Cybernetics and Systems

Abstract

A new approach has been developed for modelling natural systems. This approach uses ‘arithmetical relators’; systems are described within two different types of referentials: discrete and continuous. Stabilized systems are complexified by integrating their environment and their underlying structures are BCR’s. ‘Virtual Information Numbers’ give a new approach of the semantic aspects of information.

This work has been sponsored by Direction des Recherches, Etudes et Techniques (Délégation Générale pour l’Armement).

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References

  • C. Vallet, L. Lafreniere and T. Moulin, Un exemple de relateur arithmé tique cyclique stabilisé, in “Overlapping Tendencies in Operations Research Systems Theory and Cybernetics” Proceedings of an Int. Symp. Univ. of Fribourg (Oct. 1976) E. Billeter, M. Cuenod, S. Klaczko ed. (Birkhäuser Verlag, Basel) pp. 508-517.

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  • H. Le Guyader et ai., “New approach towards descriptions of living systems” First World Conference on Mathematics at the Service of Man (Barcelona, July 1977).

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  • L. Lafreniere et al., “Basic Cyclic Relators as a Description of Multi-levelled Systems” Int. Conf. on Applied General Systems Research (State University of New York, Binghamton, August, 1977).

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  • C. Vallet et al., “Arithmetical Models for Complex Systems” Int. Conf on Systems Science (Wroclaw, Sept.,1977). H. Le Guyader et al., “Arithmetical Relators and Virtual Information” I. F. A. C. Workshop Information and Systems (October 1977, Compiègne, France).

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© 1978 The World Organisation of General Systems and Cybernetics

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Vallet, C., Le Guyader, H., Moulin, T., Bouhou, A., Lafreniere, L. (1978). Natural Complexification of Systems by Integration of Their Environment. In: Rose, J. (eds) Current Topics in Cybernetics and Systems. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-93104-8_225

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  • DOI: https://doi.org/10.1007/978-3-642-93104-8_225

  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-642-93106-2

  • Online ISBN: 978-3-642-93104-8

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