J4 ›› 2012, Vol. 30 ›› Issue (4): 361-.

• 论文 • 上一篇    下一篇

基于Cyclic-Music算法MIMO雷达的DOA估计

王阳1|鲁祖坤1|高鹰1|赵刚2   

  1. 1.空军航空大学 航空电子工程系|长春 130022;2.解放军95926部队|长春 130022
  • 出版日期:2012-07-26 发布日期:2012-10-12
  • 作者简介:王阳(1989— )|男|山西长治人|空军航空大学硕士研究生|主要从事阵列信号处理研究|(Tel)86-15043039402(E-mail)wygjlx@163.com;高鹰(1963— )|男|四川双流人|空军航空大学教授|硕士生导师|主要从事阵列信号处理研究|(Tel)86-13610703587(E-mail)gaoying1964@163.com。
  • 基金资助:

    国家自然科学基金资助项目(61071140)

Estimation of DOA Based on Cyclic-Music |Algorithm in MIMO Radar System

WANG Yang1,LU Zu-kun1,GAO Ying1,ZHAO Gang2   

  1. 1.Department of Aviation Electronic Engineering,Aviation University of Air Force,Changchun 130022,China;2.95926 Troops of |People‘s |Liberation Army,Changchun 130022|China
  • Online:2012-07-26 Published:2012-10-12

摘要:

在具有循环平稳特性的信号环境中, 传统DOA(Direction Of Arrival)估计算法精度很差,甚至失效。为此,将Cyclic-Music算法运用在MIMO(Moltiple Inpat and Multiple Output)雷达系统中,利用循环统计量理论计算接收信号间的循环相关函数,基于此构造循环互相关矩阵,并对其进行奇异值分解和谱峰搜索,从而得到信号的波达方向角。理论推导和仿真结果均表明,该方法可以有效估计具有循环平稳特性的人工信号波达方向,从有效性和精度两个方面改善了MIMO雷达的估计性能。

关键词: MIMO雷达, 循环平稳, Cyclic-Music算法, DOA估计

Abstract:

When the traditional algorithms are applied to estimate DOA(Direction of Arrival) of signals with character of cyclostationarit using MIMO(Multiple Input and Multiple Output) radar system,the accuracy is very disappointed and even the algorithms will fail.So cyclic-music algorithm is used to estimate DOA in MIMO radar system.The theory of cyclic statistics is used to calculate the cyclic correlation function between the received signals,to construct correlation matrix of the tectonic cycle,and decompose the singular value.After searching the spectrum peaks,we can obtain the azimuth information.The theoretical deduction and simulation experiments show that for the signals with the characteristics of cyclostationarity,MIMO radar is effective and gets better accuracy by using Cyclic-Music algorithm.

Key words: multiple input and multiple output(MIMO) radar, cyclostationarity, cyclic-music algorithm, estimation of direction of arrival(DOA)

中图分类号: 

  • TN95