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混沌扩频测距方案研究
引用本文:何世彪,白洁,罗冬梅,肖利丽.混沌扩频测距方案研究[J].计算机应用,2011,31(3):632-635.
作者姓名:何世彪  白洁  罗冬梅  肖利丽
作者单位:1. 重庆大学 通信工程学院2. 重庆通信学院 军事信息工程系
基金项目:重庆市科委自然科学基金计划资助项目
摘    要:混沌序列以其相关性好、对初值敏感、保密性强等特性成为直接扩频通信系统中理想的扩频码。为充分发挥混沌序列测距的优点,在分析伪码测距的基本原理基础上,设计了两种混沌扩频测距的方案,利用数字匹配滤波器进行混沌码捕获的方法实现测距,分析了其测距的工作过程、捕获时间和测距精度。通过理论与仿真分析结果表明,利用混沌码作为扩频码实现测距是可行的,且具有高保密性、低截获和适合多目标测距等优点。

关 键 词:混沌序列  扩频码  伪码测距  捕获时间  测距精度  
收稿时间:2010-09-07
修稿时间:2010-10-29

Research of chaotic spread spectrum ranging schemes
HE Shi-biao,BAI Jie,LUO Dong-mei,XIAO Li-li.Research of chaotic spread spectrum ranging schemes[J].journal of Computer Applications,2011,31(3):632-635.
Authors:HE Shi-biao  BAI Jie  LUO Dong-mei  XIAO Li-li
Affiliation:1. College of Communication Engineering, Chongqing University2. Department of Military Information Engineering, Chongqing Communication Institute
Abstract:Chaotic sequence, with its good correlation performance, being sensitive to initial condition and hard to be decrypted, has been used as an ideal spread spectrum code in direct spread spectrum communication system. In order to take full advantages of the chaotic sequences ranging, based on the analysis of the basic principle of the pseudo code ranging and by using the digital matched filter to achieve the chaotic sequences acquisition, two chaotic spread spectrum ranging schemes were designed and their ranging processes, acquisition time and ranging accuracy were analyzed. The results show that taking the chaotic code as the spread spectrum code of ranging is feasible, with the strongpoint of high security, low interception, and it is also suitable for multi-target ranging, etc.
Keywords:chaotic sequence                                                                                                                        spread spectrum code                                                                                                                        pseudo code ranging                                                                                                                        capture time                                                                                                                        ranging accuracy
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