Communications and Radar Coexistence in the Massive MIMO Regime: Uplink Analysis
February 25, 2019 Β· Declared Dead Β· π IEEE Transactions on Wireless Communications
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Authors
Carmen D'Andrea, Stefano Buzzi, Marco Lops
arXiv ID
1902.09603
Category
cs.IT: Information Theory
Cross-listed
eess.SP
Citations
55
Venue
IEEE Transactions on Wireless Communications
Last Checked
5 months ago
Abstract
This paper considers the uplink of a massive MIMO communication system using 5G New Radio-compliant multiple access, which is to co-exist with a radar system using the same frequency band. A system model taking into account the reverberation (clutter) produced by the radar system onto the massive MIMO receiver is proposed. In this scenario, several receivers for uplink channel estimation and data detection are proposed, ranging from the simple channel-matched beamformer to the zero-forcing and linear minimum mean square error receivers for clutter disturbance rejection, under the two opposite situations of perfectly known ad completely unknown clutter covariance. A theoretical analysis is also given, deriving a lower bound on the achievable uplink spectral efficiency and the mutual information between the input Gaussian-encoded symbols and the observables available at the communication receiver of the cellular massive MIMO system: regarding the latter, in particular, we show that, in the large antenna number regime, the radar clutter effects at the base station is suppressed and single-user capacity is restored. Numerical results, illustrating the performance of the proposed detection schemes, confirm the findings of the theoretical analysis, and permit quantifying the system robustness to clutter effect for increasing number of antennas at the base station.
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