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MU-MIMO Communications With MIMO Radar: From Co-Existence to Joint Transmission

IEEE Transactions on Wireless Communications · 2018 · Vol. 17(4) · pp. 2755–2770
Fan LiuChristos MasourosAng LiHuafei SunLajos Hanzo

Abstract

Beamforming techniques are proposed for a joint multi-input-multi-output (MIMO) radar-communication (RadCom) system, where a single device acts as radar and a communication base station (BS) by simultaneously communicating with downlink users and detecting radar targets. Two operational options are considered, where we first split the antennas into two groups, one for radar and the other for communication. Under this deployment, the radar signal is designed to fall into the null-space of the downlink channel. The communication beamformer is optimized such that the beampattern obtained matches the radar's beampattern while satisfying the communication performance requirements. To reduce the optimizations' constraints, we consider a second operational option, where all the antennas transmit a joint waveform that is shared by both radar and communications. In this case, we formulate an appropriate probing beampattern, while guaranteeing the performance of the downlink communications. By incorporating the SINR constraints into objective functions as penalty terms, we further simplify the original beamforming designs to weighted optimizations, and solve them by efficient manifold algorithms. Numerical results show that the shared deployment outperforms the separated case significantly, and the proposed weighted optimizations achieve a similar performance to the original optimizations, despite their significantly lower computational complexity.

Radar Systems and Signal ProcessingAdvanced SAR Imaging TechniquesRadio Wave Propagation StudiesTelecommunications linkComputer scienceBeamformingMIMORadarBase stationTransmission (telecommunications)Electronic engineeringReal-time computingAlgorithm

Funding

  • National Natural Science Foundation of China
  • China Scholarship Council
  • Engineering and Physical Sciences Research Council
  • European Research Council
Citations
892
FWCI
374.13
field-weighted impact
References
45
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100%
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References
On Probing Signal Design For MIMO Radar
IEEE Transactions on Signal Processing · 2007 · 1,020 citations
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