TY - JOUR
T1 - Low complexity root-MUSIC algorithm for angle estimation in monostatic MIMO radar
AU - Xu, Liqin
AU - Li, Yong
N1 - Publisher Copyright:
© 2017, Editorial Office of Systems Engineering and Electronics. All right reserved.
PY - 2017/11/1
Y1 - 2017/11/1
N2 - A low complexity direction of arrival (DOA) estimation method based on the real-valued root-multiple signal classification (MUSIC) algorithm is proposed for DOA estimation in monostatic multiple input multiple output (MIMO) radar. Firstly, the dimension of the received data is reduced by the reduced-dimensional transformation and the real-valued covariance matrix of the received data is obtained by unitary transformation. Then a unitary MUSIC-based polynomial is constructed in the low-dimensional space to estimate the DOA of targets. To further reduce the computational complexity, the complex polynomial is mapped into a real-valued one by conformal mapping, and finally the DOAs can be obtained by finding the roots of the real polynomial. The method requires no peak searching and the eigenvalue decomposition and polynomial rooting are all carried out in the real domain, and it can obtain improved angle estimation performance with greatly reduced computational complexity. Simulation results verify the effectiveness of the proposed algorithm.
AB - A low complexity direction of arrival (DOA) estimation method based on the real-valued root-multiple signal classification (MUSIC) algorithm is proposed for DOA estimation in monostatic multiple input multiple output (MIMO) radar. Firstly, the dimension of the received data is reduced by the reduced-dimensional transformation and the real-valued covariance matrix of the received data is obtained by unitary transformation. Then a unitary MUSIC-based polynomial is constructed in the low-dimensional space to estimate the DOA of targets. To further reduce the computational complexity, the complex polynomial is mapped into a real-valued one by conformal mapping, and finally the DOAs can be obtained by finding the roots of the real polynomial. The method requires no peak searching and the eigenvalue decomposition and polynomial rooting are all carried out in the real domain, and it can obtain improved angle estimation performance with greatly reduced computational complexity. Simulation results verify the effectiveness of the proposed algorithm.
KW - Direction of arrival (DOA) estimation
KW - Multiple input multiple output (MIMO) radar
KW - Multiple signal classification (MUSIC)
KW - Reduced-dimensional transformation
UR - http://www.scopus.com/inward/record.url?scp=85042730069&partnerID=8YFLogxK
U2 - 10.3969/j.issn.1001-506X.2017.11.07
DO - 10.3969/j.issn.1001-506X.2017.11.07
M3 - 文章
AN - SCOPUS:85042730069
SN - 1001-506X
VL - 39
SP - 2434
EP - 2440
JO - Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics
JF - Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics
IS - 11
ER -