Scinovex
articleTop 1% cited

5GNOW: non-orthogonal, asynchronous waveforms for future mobile applications

IEEE Communications Magazine · 2014 · Vol. 52(2) · pp. 97–105
Gerhard WunderPeter JungMartin KasparickThorsten WildFrank SchaichYejian ChenStephan ten BrinkIvan GasparNicola MichailowAndreas FestagLuciano Leonel MendesNicolas CassiauDimitri KténasMarcin DryjańskiSławomir PietrzykB. EgedPeter VagoFrank Wiedmann

Abstract

This article provides some fundamental indications about wireless communications beyond LTE/LTE-A (5G), representing the key findings of the European research project 5GNOW. We start with identifying the drivers for making the transition to 5G networks. Just to name one, the advent of the Internet of Things and its integration with conventional human-initiated transmissions creates a need for a fundamental system redesign. Then we make clear that the strict paradigm of synchronism and orthogonality as applied in LTE prevents efficiency and scalability. We challenge this paradigm and propose new key PHY layer technology components such as a unified frame structure, multicarrier waveform design including a filtering functionality, sparse signal processing mechanisms, a robustness framework, and transmissions with very short latency. These components enable indeed an efficient and scalable air interface supporting the highly varying set of requirements originating from the 5G drivers.

PAPR reduction in OFDMAdvanced Wireless Communication TechniquesWireless Communication Networks ResearchComputer sciencePHYAir interfaceScalabilityAsynchronous communicationPhysical layerWirelessOrthogonalityComputer networkRobustness (evolution)

Funding

  • European Commission
Citations
874
FWCI
86.60
field-weighted impact
References
17
Percentile
100%
vs. same field & year
Citations per year
Cited by
5G: A Tutorial Overview of Standards, Trials, Challenges, Deployment, and Practice
IEEE Journal on Selected Areas in Communications · 2017 · 2,252 citations
Generalized Frequency Division Multiplexing for 5th Generation Cellular Networks
IEEE Transactions on Communications · 2014 · 876 citations
What Will 5G Be?
IEEE Journal on Selected Areas in Communications · 2014 · 8,099 citations
References
Coordinated multipoint: Concepts, performance, and field trial results
IEEE Communications Magazine · 2011 · 993 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

5GNOW: non-orthogonal, asynchronous waveforms for future mobile applications · Scinovex