Licensed shared access for wave cellular broadband communications

Markus Dominik Mueck, Ingolf Karls, Reza Arefi, Thomas Haustein, Wilhelm Keusgen

Research output: Chapter in Book/Report/Conference proceedingConference proceeding contribution

4 Citations (Scopus)

Abstract

Millimeter Wave (mmWave) communication, taking place in the frequency bands between 30 and 300 GHz, is widely considered to be a key-enabler of future Fifth Generation (5G) Cellular Communication Systems, which will be deployed starting by the year 2020 and will provide a capacity increase up to a factor of 10,000 compared to existing network infrastructures. Main drivers for this upcoming network vision include new spectrum resources and dense network infrastructures, both building on the additional resources provided by mmWave bands. While unused mmWave spectrum opportunities are still available in some regions, it is a fact that incumbents are already taking substantial portions of the spectrum in certain areas. In the framework of this paper, Licensed Shared Access (LSA) Spectrum Sharing technology is proposed to be used as a key enabler in such cases, i.e. for managing Quality of Service (QoS) guaranteed access for future 5G cellular systems, where incumbents are maintain priority access rights to mmWave spectrum.

Original languageEnglish
Title of host publication2014 1st International Workshop on Cognitive Cellular Systems (CCS 2014)
Subtitle of host publicationproceedings
Place of PublicationPiscataway, NJ
PublisherInstitute of Electrical and Electronics Engineers (IEEE)
Number of pages5
ISBN (Electronic)9781479941391, 9781479941407
ISBN (Print)9781479941384
DOIs
Publication statusPublished - 2014
Externally publishedYes
Event2014 1st International Workshop on Cognitive Cellular Systems, CCS 2014 - Rhine River, Germany
Duration: 2 Sep 20144 Sep 2014

Other

Other2014 1st International Workshop on Cognitive Cellular Systems, CCS 2014
CountryGermany
CityRhine River
Period2/09/144/09/14

Keywords

  • 5G
  • mmWave
  • Licensed Shared Access
  • Small Cells
  • Cognitive Radio

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