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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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Signal Processing for High Throughput Satellite Systems: Challenges in New Interference-Limited Scenarios

TL;DR: In this article, the state-of-the-art and open research challenges of signal processing techniques for very high throughput satellites (V/HTS) systems are presented for the first time, with focus on novel approaches for efficient interference mitigation.
Proceedings ArticleDOI

Massive MIMO and waveform design for 5th generation wireless communication systems

TL;DR: The property of self-equalization is introduced for Filter Bank Multicarrier-based Massive MIMO, which can reduce the number of subcarriers required by the system and the blind channel tracking property of FBMC can be used to address pilot contamination.
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A Comparison of MIMO Techniques in Downlink Millimeter Wave Cellular Networks With Hybrid Beamforming

TL;DR: A stochastic geometry model for coverage and rate analysis is proposed for MU-MIMO mmWave cellular networks, taking into account important mmWave-specific hardware constraints for hybrid analog/digital precoders and combiners, and a blockage-dependent channel model which is sparse in angular domain.
Journal ArticleDOI

Downlink Hybrid Information and Energy Transfer With Massive MIMO

TL;DR: This work considers a downlink massive MIMO system, where the base station simultaneously sends information and energy to information users and energy users, and proposes a joint precoder for cooperative energy transfer, for which both the centralized and distributed implementations are given.
Journal ArticleDOI

Omnidirectional Precoding Based Transmission in Massive MIMO Systems

TL;DR: This paper proposes an omnidirectional precoding (OP) based transmission for public channels in massive MIMO systems, which leads to a significant reduction in the downlink pilot overhead while providing omniddirectional signaling.
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