DocumentCode
1543056
Title
On the convergence properties of the Hopfield model
Author
Bruck, Jehoshua
Author_Institution
IBM Almaden Res. Center, San Jose, CA, USA
Volume
78
Issue
10
fYear
1990
fDate
10/1/1990 12:00:00 AM
Firstpage
1579
Lastpage
1585
Abstract
The main contribution of the present work is showing that the known convergence properties of the Hopfield model can be reduced to a very simple case, for which an elementary proof is provided. The convergence properties of the Hopfield model are dependent on the structure of the interconnections matrix W and the method by which the nodes are updated. Three cases are known: (1) convergence to a stable state when operating in a serial mode with symmetric W ; (2) convergence to a cycle of length 2, at most, when operating in a fully parallel mode with symmetric W ; and (3) convergence to a cycle of length 4 when operating in a fully parallel mode with antisymmetric W . The three known results are reviewed and it is proven that the fully parallel mode of operation is a special case of the serial model of operation. There are three more cases than can be considered using this characterization: serial mode of operation, antisymmetric W ; serial mode of operation, arbitrary W ; and fully parallel mode of operation, arbitrary W . By exhibiting exponential lower bounds on the length of the cycles in other cases, it is proven that the three known cases are the only interesting ones
Keywords
convergence of numerical methods; matrix algebra; neural nets; parallel processing; Hopfield model; convergence; exponential lower bounds; interconnections matrix; parallel mode; serial mode; Computer networks; Concurrent computing; Convergence; Hopfield neural networks; Neural networks; Neurons; Performance evaluation; Symmetric matrices; Virtual manufacturing;
fLanguage
English
Journal_Title
Proceedings of the IEEE
Publisher
ieee
ISSN
0018-9219
Type
jour
DOI
10.1109/5.58341
Filename
58341
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