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基于耦合映像格子模型的时空混沌二值序列及其性能分析
引用本文:彭军 李学明 张伟 廖晓峰 EijiOkamoto.基于耦合映像格子模型的时空混沌二值序列及其性能分析[J].计算机科学,2005,32(2):196-198.
作者姓名:彭军  李学明  张伟  廖晓峰  EijiOkamoto
作者单位:1. 重庆工业高等专科学校计算机系,重庆,400050;重庆大学计算机科学与工程学院,重庆,400044
2. 重庆大学计算机科学与工程学院,重庆,400044
3. 重庆教育学院计算机与现代教育技术系,重庆,400067
4. 筑波大学系统与情报工学研究科,筑波305-8573,日本
基金项目:国家自然科学基金(60271019),教育部博士点专项基金(20020611007),重庆市科委应用基础研究项目基金(7370),重庆工业高等专科学校科研基金
摘    要:基于耦合映像格子模型。给出了一种时空混沌二值序列的产生方法,并对其性能进行了详细分析。结果表明,该种时空混沌二值序列具有十分理想的随机性和相关性。此外,混沌序列容易产生和控制,具有线性复杂度高、对参数敏感等特性,因此特别适合于在保密通信和密码学等诸多领域中应用。

关 键 词:时空混沌  格子模型  映像  序列  耦合  理想  随机性  线性复杂度  保密通信  密码学

A Spatiotemporal Chaotic Binary Sequence Based on Coupled Map Lattices Model and its Performance Analysis
PENG Jun,LI Xue-ming,ZHANG Wei,LIAO Xiao-Feng,Eiji Okamoto.A Spatiotemporal Chaotic Binary Sequence Based on Coupled Map Lattices Model and its Performance Analysis[J].Computer Science,2005,32(2):196-198.
Authors:PENG Jun  LI Xue-ming  ZHANG Wei  LIAO Xiao-Feng  Eiji Okamoto
Affiliation:PENG Jun,LI Xue-Ming,ZHANG Wei,LIAO Xiao-Feng,Eiji Okamoto Department of Computer Science,Chongqing Polytechnic College,Chongqing 400050 Department of Computer Science and Engineering,Chongqing University,Chongqing 400044 Dept. of Computer & Modern Education Technology,Chongqing Education College,Chongqing 400067 Graduate School of Systems and Information Engineering,University of Tsukuba,Tsukuba 305-8573,Japan
Abstract:In this paper,a technique of generating spatiotemporal chaotic binary sequences based on coupled map lat- tices model is proposed and the performances of binary sequences are analyzed in detail. The results indicate that this kind of spatiotemporal chaotic binary sequence has very ideal randomicity and excellent correlation. Moreover,chaotic sequences can be easily generated and controlled, and possess properties of higher linear complexity and sensitivity with respect to the system parameters,so they are very suitable to application in secure communication and cryptolo- gy.
Keywords:Coupled map lattices  Spatiotemporal chaos  Binary sequences  Secure communication
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