Impulsive Synchronization of Stochastic Neural Networks via Controlling Partial States
Author:
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence,Computer Networks and Communications,General Neuroscience,Software
Link
http://link.springer.com/article/10.1007/s11063-016-9568-0/fulltext.html
Reference42 articles.
1. Abbas S, Xia Y (2015) Almost automorphic solutions of impulsive cellular neural networks with piecewise constant argument. Neural Process Lett 42(3):691–702
2. Azar A, Vaidyanathan S (2015) Chaos modeling and control systems design. Springer, Berlin
3. Cao J, Liang J, Lam J (2004) Exponential stability of high-order bidirectional associative memory neural networks with time delays. Physica D 199(3–4):425–436
4. Cao J, Rakkiyappan R, Maheswari K, Chandrasekar A (2016) Exponential $$h_\infty $$ h ∞ filtering analysis for discrete-time switched neural networks with random delays using sojourn probabilities. Sci China Technol Sci 59(3):387–402
5. Carli R, Zampieri S (2014) Network clock synchronization based on the second-order linear consensus algorithm. IEEE Trans Autom Control 59(2):409–422
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