Cite this article:
Yu-Jiao Huang, Xiao-Yan Wang, Hai-Xia Long, Xu-Hua Yang. Synthesization of high-capacity auto-associative memories using complex-valued neural networksJ. Chin. Phys. B, 2016, 25(12): 120701.
| Yu-Jiao Huang, Xiao-Yan Wang, Hai-Xia Long, Xu-Hua Yang. Synthesization of high-capacity auto-associative memories using complex-valued neural networksJ. Chin. Phys. B, 2016, 25(12): 120701. |
Synthesization of high-capacity auto-associative memories using complex-valued neural networks
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Abstract
In this paper, a novel design procedure is proposed for synthesizing high-capacity auto-associative memories based on complex-valued neural networks with real-imaginary-type activation functions and constant delays. Stability criteria dependent on external inputs of neural networks are derived. The designed networks can retrieve the stored patterns by external inputs rather than initial conditions. The derivation can memorize the desired patterns with lower-dimensional neural networks than real-valued neural networks, and eliminate spurious equilibria of complex-valued neural networks. One numerical example is provided to show the effectiveness and superiority of the presented results. -
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