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NOMA-based Uplink OFDMA Collision Reduction in 802.11ax Networks
  • Lee, Won Jae ;
  • Shin, Wonjae ;
  • Ruiz-De-Azua, Joan A. ;
  • Capon, Lara Fernandez ;
  • Park, Hyuk ;
  • Kim, Jae Hyun
Citations

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Publication Year
2021-01-01
Journal
International Conference on ICT Convergence
Publisher
IEEE Computer Society
Citation
International Conference on ICT Convergence, Vol.2021-October, pp.212-214
Keyword
collision reductionIEEE 802.11axNOMAUplink OFDMAWLAN
Mesh Keyword
Collision reductionsIEEE 802.11axMedium access control protocolsMultiple accessMultiple access collisionsNon-orthogonalNon-orthogonal multiple accessRandom accessResource unitsUplink orthogonal frequency division multiple access
All Science Classification Codes (ASJC)
Information SystemsComputer Networks and Communications
Abstract
Orthogonal frequency division multiple access (OFDMA) is a new feature of medium access control (MAC) protocol adopted in 802.11ax, also called High-Efficiency Wireless (HEW). The OFDMA MAC protocol allows an access point (AP) to divide the wireless channels into smaller chunks called resource units (RUs) and allocate them to different users. There are two types of RUs for the uplink (UL) OFDMA: random access (RA) RU and scheduled access (SA) RU. Only scheduled stations are allowed to access SA RU to avoid collisions; however, a collision occurs if more than one station tries to access the same RA RU. To tackle this issue, we propose a novel UL OFDMA collision reduction method with non-orthogonal multiple access (NOMA). With the help of successive interference cancellation at the receiver side, multiple stations are allowed to share the same RUs at the same time, thereby exploiting the collisions for a better resource utilization efficiency. Simulation results show that the proposed NOMA-based uplink OFDMA method outperforms the conventional orthogonal multiple access-based approach in terms of throughput as well as collision probability.
Language
eng
URI
https://aurora.ajou.ac.kr/handle/2018.oak/36698
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85122910207&origin=inward
DOI
https://doi.org/10.1109/ictc52510.2021.9621014
Journal URL
http://ieeexplore.ieee.org/xpl/conferences.jsp
Type
Conference
Funding
ACKNOWLEDGMENT This research was supported by the MSIT(Ministry of Science and ICT), Korea, under the ITRC(Information Technology Research Center) support program(IITP-2020-2018-0-01424) supervised by the IITP(Institute for Information & communications Technology Promotion)
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