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Latency Critical IoT Applications in 5G: Perspective on the Design of Radio Interface and Network Architecture

IEEE Communications Magazine · 2017 · Vol. 55(2) · pp. 70–78
Philipp SchulzMaximilian MatthéHenrik KlessigMeryem SimsekGerhard FettweisJunaid AnsariShehzad Ali AshrafBjoern AlmerothJens VoigtInes RiedelAndré PuschmannAndreas Mitschele‐ThielMichael MüllerThomas ElsteMarcus Windisch

Abstract

Next generation mobile networks not only envision enhancing the traditional MBB use case but also aim to meet the requirements of new use cases, such as the IoT. This article focuses on latency critical IoT applications and analyzes their requirements. We discuss the design challenges and propose solutions for the radio interface and network architecture to fulfill these requirements, which mainly benefit from flexibility and service-centric approaches. The article also discusses new business opportunities through IoT connectivity enabled by future networks.

PAPR reduction in OFDMWireless Communication Networks ResearchTelecommunications and Broadcasting TechnologiesComputer scienceFlexibility (engineering)Latency (audio)ArchitectureComputer networkInterface (matter)Air interfaceRadio access networkTelecommunicationsOperating system
Citations
834
FWCI
60.90
field-weighted impact
References
10
Percentile
100%
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Citations per year
Cited by
Toward Edge Intelligence: Multiaccess Edge Computing for 5G and Internet of Things
IEEE Internet of Things Journal · 2020 · 495 citations
References
5GNOW: non-orthogonal, asynchronous waveforms for future mobile applications
IEEE Communications Magazine · 2014 · 874 citations
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