TY - CONF
T1 - Low sidelobe beamforming method based on linear constraint reconstruction for colo-cated MIMO radar
AU - Xu, Feng
AU - Yang, Xiaopeng
AU - Sun, Yuze
N1 - Publisher Copyright:
© 2017 Institution of Engineering and Technology. All rights reserved.
PY - 2017
Y1 - 2017
N2 - Beam pattern synthesis is of great interest for colocated MIMO radar with larger aperture. Sever gating lobes and high sidelobe level would cause great performance loss when the transmitting array is sparse. In order to achieve a better beam pattern performance for colocated MIMO radar, a low sidelobe beamforming method based on linear constraint reconstruction is proposed. In this proposed method, beam pattern nulls are formed in the specified direction of grating lobes by using reconstructed linear constraints, which can work with low sidelobe window function. These constraints are proper eigenvectors of reconstructed covariance matrix. Comparing with conventional method, arbitrary low sidelobe weight is applied instead of quiescent weight, thus the beam pattern can obtain low sidelobe level while maintaining the ability of anti-jamming. Simulation results verify the efficiency of this proposed method in both uniform array and sparse array.
AB - Beam pattern synthesis is of great interest for colocated MIMO radar with larger aperture. Sever gating lobes and high sidelobe level would cause great performance loss when the transmitting array is sparse. In order to achieve a better beam pattern performance for colocated MIMO radar, a low sidelobe beamforming method based on linear constraint reconstruction is proposed. In this proposed method, beam pattern nulls are formed in the specified direction of grating lobes by using reconstructed linear constraints, which can work with low sidelobe window function. These constraints are proper eigenvectors of reconstructed covariance matrix. Comparing with conventional method, arbitrary low sidelobe weight is applied instead of quiescent weight, thus the beam pattern can obtain low sidelobe level while maintaining the ability of anti-jamming. Simulation results verify the efficiency of this proposed method in both uniform array and sparse array.
KW - Colocated MIMO radar
KW - Linear constraints
KW - Pattern synthesis
UR - http://www.scopus.com/inward/record.url?scp=85048677675&partnerID=8YFLogxK
M3 - Paper
AN - SCOPUS:85048677675
T2 - 2017 International Conference on Radar Systems, Radar 2017
Y2 - 23 October 2017 through 26 October 2017
ER -