Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings

This note is devoted to multiperiodically operated complex system with inventory couplings transferring waste products from some subsystems as useful components to other subsystems. The flexibility of the inventory couplings is used to force each of the subsystems with its own period and to exploit...

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Main Authors: M. Skowron, K. Styczeń
Format: Article
Language:English
Published: Wiley 2009-01-01
Series:International Journal of Chemical Engineering
Online Access:http://dx.doi.org/10.1155/2009/137483
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author M. Skowron
K. Styczeń
author_facet M. Skowron
K. Styczeń
author_sort M. Skowron
collection DOAJ
description This note is devoted to multiperiodically operated complex system with inventory couplings transferring waste products from some subsystems as useful components to other subsystems. The flexibility of the inventory couplings is used to force each of the subsystems with its own period and to exploit its particular dynamic properties. This enhances the performance of the complex system endowed with many recycling loops, which reduce the amount of waste products endangering the natural environment. The subsystems are characterized by generalized populations composed of the individuals (the cycles), each of them encompasses its period, its initial state, its local control, and its inventory interaction. An evolutionary optimization algorithm employing such generalized populations coordinated on the basis of the inventory interaction constraints is developed. It includes the stability requirements imposed on the cyclic control processes connected with particular subsystems. The algorithm proposed is applied to the global multiperiodic optimization of some interconnected chemical production processes.
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publishDate 2009-01-01
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spelling doaj-art-58bb4fb2c9174062b1b484d237782c132025-08-20T02:05:20ZengWileyInternational Journal of Chemical Engineering1687-806X1687-80782009-01-01200910.1155/2009/137483137483Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory CouplingsM. Skowron0K. Styczeń1The Institute of Computer Engineering, Control and Robotics, Wrocław University of Technology, ul. Janiszewskiego 11/17, 50-372 Wrocław, PolandThe Institute of Computer Engineering, Control and Robotics, Wrocław University of Technology, ul. Janiszewskiego 11/17, 50-372 Wrocław, PolandThis note is devoted to multiperiodically operated complex system with inventory couplings transferring waste products from some subsystems as useful components to other subsystems. The flexibility of the inventory couplings is used to force each of the subsystems with its own period and to exploit its particular dynamic properties. This enhances the performance of the complex system endowed with many recycling loops, which reduce the amount of waste products endangering the natural environment. The subsystems are characterized by generalized populations composed of the individuals (the cycles), each of them encompasses its period, its initial state, its local control, and its inventory interaction. An evolutionary optimization algorithm employing such generalized populations coordinated on the basis of the inventory interaction constraints is developed. It includes the stability requirements imposed on the cyclic control processes connected with particular subsystems. The algorithm proposed is applied to the global multiperiodic optimization of some interconnected chemical production processes.http://dx.doi.org/10.1155/2009/137483
spellingShingle M. Skowron
K. Styczeń
Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings
International Journal of Chemical Engineering
title Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings
title_full Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings
title_fullStr Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings
title_full_unstemmed Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings
title_short Evolutionary Search for Globally Optimal Stable Multicycles in Complex Systems with Inventory Couplings
title_sort evolutionary search for globally optimal stable multicycles in complex systems with inventory couplings
url http://dx.doi.org/10.1155/2009/137483
work_keys_str_mv AT mskowron evolutionarysearchforgloballyoptimalstablemulticyclesincomplexsystemswithinventorycouplings
AT kstyczen evolutionarysearchforgloballyoptimalstablemulticyclesincomplexsystemswithinventorycouplings