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Journal ArticleDOI

Noncooperative Cellular Wireless with Unlimited Numbers of Base Station Antennas

Thomas L. Marzetta
- 01 Nov 2010 - 
- Vol. 9, Iss: 11, pp 3590-3600
TLDR
A cellular base station serves a multiplicity of single-antenna terminals over the same time-frequency interval and a complete multi-cellular analysis yields a number of mathematically exact conclusions and points to a desirable direction towards which cellular wireless could evolve.
Abstract
A cellular base station serves a multiplicity of single-antenna terminals over the same time-frequency interval. Time-division duplex operation combined with reverse-link pilots enables the base station to estimate the reciprocal forward- and reverse-link channels. The conjugate-transpose of the channel estimates are used as a linear precoder and combiner respectively on the forward and reverse links. Propagation, unknown to both terminals and base station, comprises fast fading, log-normal shadow fading, and geometric attenuation. In the limit of an infinite number of antennas a complete multi-cellular analysis, which accounts for inter-cellular interference and the overhead and errors associated with channel-state information, yields a number of mathematically exact conclusions and points to a desirable direction towards which cellular wireless could evolve. In particular the effects of uncorrelated noise and fast fading vanish, throughput and the number of terminals are independent of the size of the cells, spectral efficiency is independent of bandwidth, and the required transmitted energy per bit vanishes. The only remaining impairment is inter-cellular interference caused by re-use of the pilot sequences in other cells (pilot contamination) which does not vanish with unlimited number of antennas.

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Citations
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Massive But Few Active MIMO

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Superimposed Pilots Are Superior for Mitigating Pilot Contamination in Massive MIMO

TL;DR: A non-iterative scheme for uplink channel estimation based on superimposed pilots is proposed and an expression for the uplink signal-to-interference-plus-noise ratio (SINR) is derived at the output of a matched filter employing this channel estimate.
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Spectrum Sharing in mmWave Cellular Networks via Cell Association, Coordination, and Beamforming

TL;DR: In this paper, the authors investigated the performance gain of spectrum sharing in mmWave networks with multiple cellular operators and showed that spectrum sharing with light on-demand intra-and inter-operator coordination is feasible, especially at higher mmWave frequencies.
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Joint Pilot and Payload Power Allocation for Massive-MIMO-Enabled URLLC IIoT Networks

TL;DR: In this paper, the authors derived the closed-form expression of lower bound (LB) of achievable uplink data rate for massive MIMO system with imperfect channel state information (CSI) for both maximum-ratio combining (MRC) and zero-forcing (ZF) receivers.
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