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基于神经网络的混沌信号源的设计及同步

张家树 肖先赐

张家树, 肖先赐. 基于神经网络的混沌信号源的设计及同步[J]. 电子与信息学报, 2002, 24(1): 37-44.
引用本文: 张家树, 肖先赐. 基于神经网络的混沌信号源的设计及同步[J]. 电子与信息学报, 2002, 24(1): 37-44.
Zharig Jiashu, Xiao Xianci. Chaotic signal source design and synchronization based on neural networks[J]. Journal of Electronics & Information Technology, 2002, 24(1): 37-44.
Citation: Zharig Jiashu, Xiao Xianci. Chaotic signal source design and synchronization based on neural networks[J]. Journal of Electronics & Information Technology, 2002, 24(1): 37-44.

基于神经网络的混沌信号源的设计及同步

Chaotic signal source design and synchronization based on neural networks

  • 摘要: 该文应用具有全局最优的BP改进算法和神经网络的强大学习能力、逼近任意非线性能力和权值调整的灵活性来优化混沌信号源的设计,采用非线性负反馈实现了神经网络混沌信号源之间的同步。计算机仿真结果表明:由于该模型充分利用了逼近任意非线性能力和网络权值调整的灵活性,比单一混沌映射能产生更多的、具有良好相关性能的混沌信号,且易于同步。
  • G. Heidari-Batem, C. D. McGillem, A chaotic direct-sequence spread-spectrum communication system, IEEE Trans. On Communication, 1994,42(2/3/4), 1524-1527.[2]D.S. Morrantes, D. M. Rodrigues, Chaotic sequence for multiple access, Electron. Lett., 1998,34(3), 225-227.[3]Y.C. Lai, E. Billt, C. Grebogi, Communicating with chaos using two-dimensional symbolic dynamics, Phys. Lett. A, 1999, 255(1), 75-81.[4]L.M. Frey, Chaotic digital encoding, An approach to secure communication, IEEE Trans. on Circuit Syst.(Ⅱ), 1993, 40(10), 660-666.[5]L.M. Pecora, T. L. Carrol, Synchronization in chaotic systems, Phys. Rev. Lett., 1990, 64(8),821-824.[6]U. Feldman, M. Hasler, W. Schwarz, Communication by chaotic signals, The inverse system approach, Int. J. Circiut Theory and Application, 1996, 24(6), 551-579.[7]S. Haykin, X. B. Li, Detection of signals in chaos, Proc. IEEE, 1995, 83(1), 95-122.[8]K.M. Short, Steps toward unmaking secure communications, Int. J. Bifurcation and Chaos.1994, 4(4), 959-977.[9]K.M. Short, Signal extraction from chaotic communication, Int. J. Bifurcation and Chaos, 1997,7(7), 1579-1697.[10]K. Hornik, M. Stinchcombe, H. White, Universal approximation of an unknown mapping and its derivatives using multilayer feedforward networks, Neural networks, 1990, 3(10), 535-549.[11]A. M. Albano, A. Passamante, T. Hediger, M. E. Farrell, Using neural nets to look for chaos.Physica D, 1992, 58(1), 1-9.[12]荆涛,徐勇,扬怀江,宋建中,一种基于神经网络的混沌序列产生方法,通信学报,1999,20(6),77-81.[13]张家树,肖先赐,混沌时间序列的自适应高阶非线性滤波预测,物理学报,2000 , 49(7)1221-1226.[14]张家树,肖先赐,混沌时间序列的Volterra自适应滤波预测,物理学报,2000,49(3),403-408[15]朱伟勇,王兴元,二维Logistic映射中的阵发混沌与分形,东北大学学报(自然科学版),1998.19(5),509-512.[16]Zhang Jia-Shu, Xiao Xian-Ci, Fast evolving multi-layer perceptrons for noisy chaot ic time series modeling and predict ions, Chinese Physics, 2000, 9(6), 408-413.
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出版历程
  • 收稿日期:  1999-12-23
  • 修回日期:  2000-08-24
  • 刊出日期:  2002-01-19

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