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Adaptive learning networks in APL2

Published: 01 September 1993 Publication History

Abstract

The paper considers Adaptive Learning Networks (ALN) as a tool to solve the problems of modeling, prediction, diagnostics and pattern recognition in complex systems. This method is similar to the neural network technique. The main difference is the self-organization of network structure on the basis of generation and estimation of various nodes, connections and weights. A set of functions presented in the paper shows that ALNs are easily realized in APL2. User-defined operators are used as a very convenient tool for ALN programming. The paper discusses the application of implemented software to the problem of Burnout Heat Flux Prediction in nuclear reactors. It is shown that ALN technique allows the prediction of burnout heat flux with approximately three times better accuracy than other commonly used methods.

References

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A.G.Ivakhnenko. Polynomial theory of complex systems. IEEE Transactions on Systems, Man and Cybernetics, SMC- 1 (4), October 1971.
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M. Alfonseca. Neural networks in APL. A CM SIGAPL Quote Quad, 20(4), July 1990.
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R.L. Barron. Adaptive transformation networks for modelling, prediction and control. In Joint National Conference of Major Systems Proceedings, IEEE/ORSA, October 1971.
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H.A. Broaclbent and J.Lucas. A neural networks model of serial learning. A CM SIGAPL Quote Qua& 19(4), August 1989.
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V.E. Doroshuk. Heat Transfer Burnout with Water Boiling in Ducts. Energoatomizdat, Moscow, 1983.
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R.E. Uhrig. Application of neural networks to the operation of nuclear power plants. In A Symposium on Nuclear Reactor Surveillance and Diagnostics Proceedings, May 1991.

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cover image ACM Conferences
APL '93: Proceedings of the international conference on APL
September 1993
325 pages
ISBN:0897916123
DOI:10.1145/166197

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Association for Computing Machinery

New York, NY, United States

Publication History

Published: 01 September 1993

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APL93
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APL93: International Conference on APL
August 15 - 19, 1993
Ontario, Toronto, Canada

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  • (2020)Critical power prediction using SVM algorithmsProcedia Computer Science10.1016/j.procs.2020.02.136169(198-202)Online publication date: 2020
  • (1996)Genetic algorithmsACM SIGAPL APL Quote Quad10.1145/253417.25339926:4(97-106)Online publication date: 15-Jun-1996
  • (1996)Genetic algorithmsProceedings of the conference on Designing the future10.1145/253341.253399(97-106)Online publication date: 2-Aug-1996
  • (1996)Heat transfer—a review of 1993 literatureInternational Journal of Heat and Mass Transfer10.1016/0017-9310(95)00132-839:5(885-963)Online publication date: Mar-1996

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