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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
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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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Journal ArticleDOI

Future railway services-oriented mobile communications network

TL;DR: Wireless coverage based on massive MIMO for railway stations and train cars is proposed to fulfill the requirement of high-data-rate and high spectrum efficiency and the technical challenges brought by the massive M IMO technique are discussed.
Proceedings ArticleDOI

Total energy efficiency of cellular large scale antenna system multiple access mobile networks

TL;DR: An LSAS with sixty-four OdB gain service antennas per cell can simultaneously serve 15 users with a total energy efficiency almost 1000 times greater than that of a typical LTE base station and at the same time more than quadruple the aggregate spectral efficiency.
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Smart Pilot Assignment for Massive MIMO

TL;DR: A smart pilot assignment (SPA) scheme is proposed in this letter to improve the performance of users with severe pilot contamination by exploiting the large-scale characteristics of fading channels.
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Scalable Synchronization and Reciprocity Calibration for Distributed Multiuser MIMO

TL;DR: Novel over-the-air synchronization and calibration protocols that scale well with the network size are proposed and are shown to achieve sufficient accuracy for satisfactory distributed MU-MIMO performance.
Journal ArticleDOI

On Capacity of Large-Scale MIMO Multiple Access Channels with Distributed Sets of Correlated Antennas

TL;DR: A deterministic equivalent of ergodic sum rate and an algorithm for evaluating the capacity-achieving input covariance matrices for the uplink large-scale multiple-input multiple-output (MIMO) antenna channels are proposed.
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Journal ArticleDOI

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TL;DR: It is shown that the dirty paper achievable region achieves the sum-rate capacity of the MIMO BC by establishing that the maximum sum rate of this region equals an upper bound on the sum rate.
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