This paper describes a software architecture which supports the design of hierarchical controllers that provide facilities for adaptation, supervision and task planning. It details how this form of functional hierarchy differs from the structural hierarchy also inherent within a complex control system. Then, both forms of hierarchy are combined in a single design notation and development methodology. The system utilises intelligent control techniques (neuro‐fuzzy and genetic optimisation) for controlling a cryogenic plant used for superconductor testing by cooling the test samples to temperatures below 1008K. The system supports the design of a hierarchical controller that provides facilities for adaptation, supervision and task planning. Simulation results are presented.
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1 October 2000
Technical Paper|
October 01 2000
A blackboard software architecture for integrated intelligent control systems
M.F. Abbod;
M.F. Abbod
Department of Automatic Control and Systems Engineering, University of Sheffield, Sheffield, UK
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D.A. Linkens;
D.A. Linkens
Department of Automatic Control and Systems Engineering, University of Sheffield, Sheffield, UK
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A. Browne;
A. Browne
Department of Automatic Control and Systems Engineering, University of Sheffield, Sheffield, UK
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N. Cade
N. Cade
GEC‐Marconi Materials Technology, Elstree Way, Borehamwood, Hertfordshire, UK
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Publisher: Emerald Publishing
Online ISSN: 1758-7883
Print ISSN: 0368-492X
© MCB UP Limited
2000
Kybernetes (2000) 29 (7-8): 999–1015.
Citation
Abbod M, Linkens D, Browne A, Cade N (2000), "A blackboard software architecture for integrated intelligent control systems". Kybernetes, Vol. 29 No. 7-8 pp. 999–1015, doi: https://doi.org/10.1108/03684920010342099
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