Existence and global stability of periodic solution for delayed discrete high-order Hopfield-type neural networks.
Xiang, Hong, Yan, Ke-Ming, Wang, Bai-Yan (2005)
Discrete Dynamics in Nature and Society
Similarity:
The search session has expired. Please query the service again.
The search session has expired. Please query the service again.
Xiang, Hong, Yan, Ke-Ming, Wang, Bai-Yan (2005)
Discrete Dynamics in Nature and Society
Similarity:
Huang, Chuangxia, He, Yigang, Huang, Lihong (2008)
Journal of Inequalities and Applications [electronic only]
Similarity:
Guo, Yingxin, Xue, Mingzhi (2009)
Discrete Dynamics in Nature and Society
Similarity:
Zhang, Yimin, Li, Yongkun, Ye, Kuohui (2009)
Abstract and Applied Analysis
Similarity:
Yang, Xinsong (2008)
International Journal of Mathematics and Mathematical Sciences
Similarity:
Li, Yongkun, Zhu, Lifei, Liu, Wenxiang (2005)
International Journal of Mathematics and Mathematical Sciences
Similarity:
Li, Yongkun, Zhao, Lili, Liu, Ping (2009)
Discrete Dynamics in Nature and Society
Similarity:
Xiang, Hongjun, Cao, Jinde (2008)
Journal of Applied Mathematics
Similarity:
Wang, Yi, Ma, Zhongjun, Liu, Hongli (2009)
Journal of Inequalities and Applications [electronic only]
Similarity:
Liao, Xiaofeng, Guo, Songtao (2007)
Discrete Dynamics in Nature and Society
Similarity:
Qianhong Zhang, Lihui Yang, Daixi Liao (2011)
International Journal of Applied Mathematics and Computer Science
Similarity:
Fuzzy cellular neural networks with time-varying delays are considered. Some sufficient conditions for the existence and exponential stability of periodic solutions are obtained by using the continuation theorem based on the coincidence degree and the differential inequality technique. The sufficient conditions are easy to use in pattern recognition and automatic control. Finally, an example is given to show the feasibility and effectiveness of our methods.
Huang, Chuangxia, Huang, Lehua, He, Yigang (2010)
Discrete Dynamics in Nature and Society
Similarity: