An Improved Propagator Method for DOA Estimation of Coherent Sources Without the Source Number

被引:0
|
作者
Li, Jianzhong [1 ]
Liu, Dakang [1 ]
Liu, Yuan [1 ]
Luo, Dongxiang [2 ,3 ]
Gu, Xiaobo [4 ]
机构
[1] Guangdong Univ Technol, Sch Integrated Circuits, Guangzhou 510000, Peoples R China
[2] South China Normal Univ, Inst Semicond, Guangzhou 510631, Peoples R China
[3] Guangzhou Univ, Sch Chem & Chem Engn, Guangzhou 510000, Peoples R China
[4] Guangdong Univ Technol, Sch Automat, Guangzhou 510000, Peoples R China
基金
中国国家自然科学基金;
关键词
Improved propagator; DOA estimation; Coherent sources; ALGORITHM; SIGNALS;
D O I
10.1007/s00034-023-02424-0
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Subspace-based methods are very effective to estimate the direction of arrival (DOA) of sources with a high accuracy. In this paper, a method is proposed to estimate DOA of coherent signals without a priori knowledge of the source number, which is also suitable for independent or partly correlated sources, making the family of subspace-based methods more practical. The low-complexity autocovariance matrix is considered, and the spatial smoothing technique will be adopted to restore the column rank. In the case that the source number is unknown, the noise effect is eliminated with a specific noise estimation for coherent signals. A method combining the source number estimation and source localization is firstly presented. The corresponding analysis is given, and the weakness is shown. Then, another method is introduced to overcome the weakness, in which an improved propagator can be constructed to estimate the DOAs without the source number. The effectiveness is evaluated through simulations.
引用
收藏
页码:6798 / 6812
页数:15
相关论文
共 50 条
  • [41] FOA and 2-D DOA estimation with propagator method
    Tayem, N
    Kwon, HM
    Min, S
    Kang, D
    VTC2005-FALL: 2005 IEEE 62ND VEHICULAR TECHNOLOGY CONFERENCE, 1-4, PROCEEDINGS, 2005, : 2211 - 2215
  • [42] DOA estimation for coherent sources with spatial smoothing without eigendecomposition under unknown noise field
    Tayem, N
    Kwon, HM
    Lee, YH
    GLOBECOM '05: IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, VOLS 1-6: DISCOVERY PAST AND FUTURE, 2005, : 2307 - 2311
  • [43] AN IMPROVED MODE-MUSIC ALGORITHM FOR DOA ESTIMATION OF COHERENT SOURCES BASED ON HYBIRD ARRAY
    Han, Yong
    Cao, Bingxia
    Dong, Wenyi
    Fang, Qingyuan
    Zhang, Wei
    2014 12TH INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING (ICSP), 2014, : 358 - 362
  • [44] 2D DOA Estimation Through a Spiral Array Without the Source Number
    Li, Jianzhong
    Dai, Junbiao
    Liang, Zexiao
    Liu, Dakang
    Guo, Shaozhi
    Liu, Yuan
    CIRCUITS SYSTEMS AND SIGNAL PROCESSING, 2022, 41 (05) : 3011 - 3022
  • [45] A New DOA Estimation Method for Uncorrelated and Coherent Sources under Nonstationary Noise Fields
    Guo, Yi-Duo
    Zhang, Yong-Shun
    Tong, Ning-Ning
    2009 IEEE 8TH INTERNATIONAL CONFERENCE ON ASIC, VOLS 1 AND 2, PROCEEDINGS, 2009, : 987 - 990
  • [46] Enhanced forward backward spatial filtering method for DOA estimation of narrowband coherent sources
    Delis, A
    Papadopoulos, G
    IEE PROCEEDINGS-RADAR SONAR AND NAVIGATION, 1996, 143 (01) : 10 - 16
  • [47] 2D DOA Estimation Through a Spiral Array Without the Source Number
    Jianzhong Li
    Junbiao Dai
    Zexiao Liang
    Dakang Liu
    Shaozhi Guo
    Yuan Liu
    Circuits, Systems, and Signal Processing, 2022, 41 : 3011 - 3022
  • [48] DOA and Noncircular Phase Estimation of Noncircular Signal via an Improved Noncircular Rotational Invariance Propagator Method
    Chen, Xueqiang
    Wang, Chenghua
    Zhang, Xiaofei
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2015, 2015
  • [49] AN IMPROVED ESPRIT ALGORITHM FOR DOA ESTIMATION OF COHERENT SIGNALS
    Karmous, Neder
    El Hassan, Mohamed Quid
    Choubeni, Fethi
    2018 INTERNATIONAL CONFERENCE ON SMART APPLICATIONS, COMMUNICATIONS AND NETWORKING (SMARTNETS), 2018,
  • [50] An improved music algorithm for DOA estimation of coherent signals
    1600, International Frequency Sensor Association (175):