Flexible Physical Layer based Resource Allocation for Machine Type Communications Towards 6G

被引:10
|
作者
Sadi, Yalcin [1 ]
Erkucuk, Serhat [1 ]
Panayirci, Erdal [1 ]
机构
[1] Kadir Has Univ, Elect & Elect Engn, Istanbul, Turkey
关键词
Resource Allocation; Flexible Physical Layer; Machine Type Communications; 5G and Beyond; 6G;
D O I
10.1109/6gsummit49458.2020.9083921
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
The exponential growth of Internet of Things applications necessitates the design of next generation cellular systems to provide native support for machine type communications (MTC). While 5G aims at providing this native support under domain of massive MTC (mMTC) as one of the three major domains it focuses; i.e., enhanced mobile broadband, ultra reliable low latency communication, and mMTC, the enabling technologies and communication architectures are still limited and incomplete considering the nearly standardized efforts under 3GPP Releases 15 and 16. Studies towards 6G should elaborate on enabling truly massive MTC flexibly to support fast growing machine-to-machine (M2M) services with massive number of devices and very diverse quality of service (QoS) requirements. In this paper, we study radio resource allocation for mMTC based on the envisioned flexible physical layer architecture for 5G and beyond, possibly including 6G. We first present an overview of the 5G New Radio physical layer aspects particularly focusing on multiple numerologies and discuss the 3GPP features in Releases 15-17 as possible enablers of a flexible radio resource allocation scheme. Then, we propose a polynomial-time persistent resource allocation scheme for M2M communications aiming at meeting diverse QoS requirements of the M2M applications while achieving spectral efficiency. Finally, we present some numerical results and discuss future research directions for access schemes to enable truly massive MTC.
引用
收藏
页数:5
相关论文
共 50 条
  • [1] Machine type communications: key drivers and enablers towards the 6G era
    Mahmood, Nurul Huda
    Boecker, Stefan
    Moerman, Ingrid
    Lopez, Onel A.
    Munari, Andrea
    Mikhaylov, Konstantin
    Clazzer, Federico
    Bartz, Hannes
    Park, Ok-Sun
    Mercier, Eric
    Saidi, Selma
    Osorio, Diana Moya
    Jantti, Riku
    Pragada, Ravikumar
    Annanpera, Elina
    Ma, Yihua
    Wietfeld, Christian
    Andraud, Martin
    Liva, Gianluigi
    Chen, Yan
    Garro, Eduardo
    Burkhardt, Frank
    Liu, Chen-Feng
    Alves, Hirley
    Sadi, Yalcin
    Kelanti, Markus
    Dore, Jean-Baptiste
    Kim, Eunah
    Shin, JaeSheung
    Park, Gi-Yoon
    Kim, Seok-Ki
    Yoon, Chanho
    Anwar, Khoirul
    Seppanen, Pertti
    [J]. EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2021, 2021 (01)
  • [2] Machine type communications: key drivers and enablers towards the 6G era
    Nurul Huda Mahmood
    Stefan Böcker
    Ingrid Moerman
    Onel A. López
    Andrea Munari
    Konstantin Mikhaylov
    Federico Clazzer
    Hannes Bartz
    Ok-Sun Park
    Eric Mercier
    Selma Saidi
    Diana Moya Osorio
    Riku Jäntti
    Ravikumar Pragada
    Elina Annanperä
    Yihua Ma
    Christian Wietfeld
    Martin Andraud
    Gianluigi Liva
    Yan Chen
    Eduardo Garro
    Frank Burkhardt
    Chen-Feng Liu
    Hirley Alves
    Yalcin Sadi
    Markus Kelanti
    Jean-Baptiste Doré
    Eunah Kim
    JaeSheung Shin
    Gi-Yoon Park
    Seok-Ki Kim
    Chanho Yoon
    Khoirul Anwar
    Pertti Seppänen
    [J]. EURASIP Journal on Wireless Communications and Networking, 2021
  • [3] Physical Layer Security Based Enabling Technologies for 6G Communications Values
    Jorswieck, Eduard
    Lin, Pin-Hsun
    Janda, Carsten
    [J]. 2022 IEEE FUTURE NETWORKS WORLD FORUM, FNWF, 2022, : 550 - 555
  • [4] Physical Layer Security Based Enabling Technologies for 6G Communications Values
    Jorswieck, Eduard
    Lin, Pin-Hsun
    Janda, Carsten
    [J]. Proceedings - 2022 IEEE Future Networks World Forum, FNWF 2022, 2022, : 550 - 555
  • [5] Flexible Radio Resource Allocation for Machine Type Communications in 5G Cellular Networks
    Hussien, Zaid Haj
    Sadi, Yalcin
    [J]. 2018 26TH SIGNAL PROCESSING AND COMMUNICATIONS APPLICATIONS CONFERENCE (SIU), 2018,
  • [6] Greener Physical Layer Technologies for 6G Mobile Communications
    Han, Shuangfeng
    Xie, Tian
    Chih-Lin, I
    [J]. IEEE COMMUNICATIONS MAGAZINE, 2021, 59 (04) : 68 - 74
  • [7] Deep Learning Techniques for Advancing 6G Communications in the Physical Layer
    Zhang, Shangwei
    Liu, Jiajia
    Rodrigues, Tiago Koketsu
    Kato, Nei
    [J]. IEEE WIRELESS COMMUNICATIONS, 2021, 28 (05) : 141 - 147
  • [8] The Road to 6G: Ten Physical Layer Challenges for Communications Engineers
    Matthaiou, Michail
    Yurduseven, Okan
    Ngo, Hien Quoc
    Morales-Jimenez, David
    Cotton, Simon L.
    Fusco, Vincent F.
    [J]. IEEE COMMUNICATIONS MAGAZINE, 2021, 59 (01) : 64 - 69
  • [9] Deep-Learning-Based Resource Allocation for 6G NOMA-Assisted Backscatter Communications
    Tuong, Van Dat
    Cho, Sungrae
    [J]. IEEE Internet of Things Journal, 2024, 11 (19) : 32234 - 32243
  • [10] Unsourced multiple access for 6G massive machine type communications
    Li, Yuanjie
    Dai, Jincheng
    Si, Zhongwei
    Niu, Kai
    Dong, Chao
    Lin, Jiaru
    Wang, Sen
    Yuan, Yifei
    [J]. CHINA COMMUNICATIONS, 2022, 19 (03) : 70 - 87