Title
A nonlinear-ADMM method for designing MIMO radar constant modulus waveform with low correlation sidelobes.
Abstract
•This paper investigates the design of constant modulus waveforms with low auto- and cross-correlation sidelobes for multiple-input multiple-output (MIMO) radar.•Unlike the existing methods, for the design of the waveforms with good correlations in an indirect manner, we propose a direct algorithm, i.e., nonlinear-ADMM method, to tackle this problem with minimizing the WISL merit.•Both the convergence and termination conditions of the nonlinear-ADMM are discussed.•The results show that the proposed algorithm can converges very fast. More importantly, we observe that the proposed algorithm outperform the WeCAN in terms of the achievable WISL and convergence speed, and has lower computational complexity than BCD at each iteration as well.
Year
DOI
Venue
2019
10.1016/j.sigpro.2019.02.005
Signal Processing
Keywords
Field
DocType
MIMO radar,Constant modulus waveform,Auto- and cross-correlation,Weighted integrated sidelobe level,Nonlinear-ADMM
Convergence (routing),Radar,Mathematical optimization,Nonlinear system,Computer simulation,Waveform,Algorithm,Modulus,MIMO,Mathematics,Computational complexity theory
Journal
Volume
ISSN
Citations 
159
0165-1684
0
PageRank 
References 
Authors
0.34
0
5
Name
Order
Citations
PageRank
Ziyang Cheng1407.68
Bin Liao219632.33
Zishu He322854.71
Jun Li4101.47
Chun-Lin Han541.45