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What Will 5G Be?

IEEE Journal on Selected Areas in Communications · 2014 · Vol. 32(6) · pp. 1065–1082
Jeffrey G. AndrewsStefano BuzziWan ChoiStephen V. HanlyAngel LozanoAnthony C. K. SoongJianzhong Charlie Zhang

Abstract

What will 5G be? What it will not be is an incremental advance on 4G. The previous four generations of cellular technology have each been a major paradigm shift that has broken backward compatibility. Indeed, 5G will need to be a paradigm shift that includes very high carrier frequencies with massive bandwidths, extreme base station and device densities, and unprecedented numbers of antennas. However, unlike the previous four generations, it will also be highly integrative: tying any new 5G air interface and spectrum together with LTE and WiFi to provide universal high-rate coverage and a seamless user experience. To support this, the core network will also have to reach unprecedented levels of flexibility and intelligence, spectrum regulation will need to be rethought and improved, and energy and cost efficiencies will become even more critical considerations. This paper discusses all of these topics, identifying key challenges for future research and preliminary 5G standardization activities, while providing a comprehensive overview of the current literature, and in particular of the papers appearing in this special issue.

Advanced MIMO Systems OptimizationCooperative Communication and Network CodingAdvanced Wireless Communication TechnologiesComputer scienceParadigm shiftStandardizationBase stationTelecommunicationsFlexibility (engineering)Backward compatibilityTyingAir interfaceCore network

Funding

  • University of Texas at Austin
Citations
8,099
FWCI
528.35
field-weighted impact
References
178
Percentile
100%
vs. same field & year
Citations per year
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References
On the capacity of a cellular CDMA system
IEEE Transactions on Vehicular Technology · 1991 · 2,957 citations
Interference Alignment and Degrees of Freedom of the $K$-User Interference Channel
IEEE Transactions on Information Theory · 2008 · 3,037 citations
Transmit beamforming for physical-layer multicasting
IEEE Transactions on Signal Processing · 2006 · 1,359 citations
CDMA/HDR: a bandwidth efficient high speed wireless data service for nomadic users
IEEE Communications Magazine · 2000 · 1,198 citations
Millimeter Wave Channel Modeling and Cellular Capacity Evaluation
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Seven ways that HetNets are a cellular paradigm shift
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