Page 40 - ITU Journal Future and evolving technologies Volume 2 (2021), Issue 7 – Terahertz communications
P. 40

ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 7




          5.  ACKNOWLEDGMENT                                     [9]  Cheng  Wang,  Changxing  Lin,  Qi  Chen,  Bin  Lu,  Xi‑
                                                                     anjin  Deng,  and  Jian  Zhang.  “A  10‑Gbit/s  wireless
          This  material  is  based  upon  work  supported  by  the
                                                                     communication  link  using  16‑QAM  modulation  in
          National   Science   Foundation   Graduate   Research
                                                                     140‑GHz   band”.   In:   IEEE   Transactions   on
          Fellowship Program  under  Grant  No.  1746055  and  by
                                                                     Microwave  Theory  and  Techniques  61.7  (2013),
          the  National  Science  Foundation  under  Grant  No.
                                                                     pp.  2737–2746.
          2018110.  Any  opinions,    indings,  and  conclusions  or
                                                               [10]  Xinying  Li,  Jianjun  Yu,  Kaihui  Wang,  Yuming  Xu,
          recommendations  ex‑ pressed in this material are those
                                                                     Long   Chen,   Li   Zhao,   and   Wen   Zhou.
          of the author(s) and do not necessarily re lect the views
          of the National Science Foundation.                        “Bidirectional   delivery   of   54‑Gbps   8QAM
                                                                     W‑band  signal  and  32‑Gbps  16QAM  K‑band
                                                                     signal  over  20‑km  SMF‑28  and  2500‑m  wireless
          REFERENCES                                                 distance”.   In:   Optical   Fiber   Communication
                                                                     Conference.  Optical  Society  of  America.  2017,
                                                                     Th5A–7.
           [1]  Walid  Saad,  Mehdi  Bennis,  and  Mingzhe  Chen.  “A
               vision of 6G wireless systems: Applications, trends,  [11]  Ingmar  Kallfass,  Jochen  Antes,  Axel  Tessmann,
               technologies,  and  open  research  problems”.  In:   Thomas    Zwick,   and    Ralf   Henneberger.
               IEEE network 34.3 (2019), pp. 134–142.                “Multi‑Gigabit  high‑range   ixed  wireless  links at
                                                                     high  millimeterwave  carrier  frequencies”.  In:  2017
           [2]  GMDT  Forecast.  “Cisco  visual  networking  index:  IEEE   Radio   and     Wireless    Symposium
               global  mobile  data  traf ic  forecast  update,  2017–  (RWS).  IEEE. 2017, pp. 45–48.
               2022”. In: Update 2017 (2019), p. 2022.
                                                               [12]  Qiuyu  Wu,  Changxing  Lin,  Bin  Lu,  Li  Miao,  Xin
           [3]  L.  Chettri  and  R.  Bera.  “A  Comprehensive  Survey  Hao,  Zhaohui  Wang,  Yi  Jiang,  Wenqiang  Lei,  Xian‑
               on  Internet  of  Things  (IoT)  Toward  5G  Wireless  jing  Den,  Hongbin  Chen,  et  al.  “A  21  km  5
               Systems”.  In:  IEEE  Internet  of  Things  Journal  7.1  Gbps  real  time  wireless  communication  system
               (2020),  pp.  16–32.  DOI:  10 . 1109 / JIOT . 2019 .  at   0.14  THz”.  In:  2017  42nd  International
               2948888.                                              Conference on In‑ frared,  Millimeter,  and  Terahertz

           [4]  K.  Sha ique,  B.  A.  Khawaja,  F .  Sabir,  S.  Qazi,  Waves  (IRMMW‑ THz). IEEE. 2017, pp. 1–2.
               and  M.  Mustaqim.  “Internet  of  Things  (IoT)  for
                                                               [13]  M.  Polese,  J.  M.  Jornet,  T .  Melodia,  and  M.  Zorzi.
               Next‑Generation Smart Systems: A Review of Cur‑       “Toward  End‑to‑End,  Full‑Stack  6G  Terahertz  Net‑
               rent  Challenges,  Future  Trends  and  Prospects  for  works”.   In:   IEEE   Communications   Magazine
               Emerging  5G‑IoT  Scenarios”.  In:  IEEE  Access  8   58.11 (2020),  pp.  48–54.  DOI:  10 . 1109 / MCOM .
               (2020), pp. 23022–23040. DOI: 10.1109/ACCESS.         001 . 2000224.
               2020.2970118.
                                                               [14]  S. Ghafoor, N. Boujnah, M. H. Rehmani, and A. Davy.
           [5]  Y . Xing and T . S. Rappaport. “Propagation Measure‑   “MAC  Protocols  for  Terahertz  Communication:
               ment System and Approach at 140 GHz‑Moving to         A    Comprehensive    Survey”.   In:   IEEE
               6G and Above 100 GHz”. In: 2018 IEEE Global Com‑      Communications Surveys Tutorials 22.4 (2020), pp.
               munications Conference (GLOBECOM). 2018, pp. 1–       2236–2282. DOI: 10.1109/COMST.2020.3017393.
               6. DOI: 10.1109/GLOCOM.2018.8647921.
                                                               [15]  T . Schneider, A. Wiatrek, S. Preussler, M. Grigat, and
           [6]  Ho‑Jin Song and Tadao Nagatsuma. “Present and fu‑     R. Braun.  “Link  Budget  Analysis  for  Terahertz
               ture  of  terahertz  communications”.  In:  IEEE  tran‑   Fixed  Wireless  Links”.  In:  IEEE  Transactions  on
               sactions  on  terahertz  science  and  technology     Terahertz Science  and  Technology  2.2  (2012),  pp.
               1.1 (2011), pp. 256–263.                              250–256. DOI: 10.1109/TTHZ.2011.2182118.
           [7]  A Hirata, T Kosugi, H Takahashi, J Takeuchi, K Mu‑   [16]  K.  Rikkinen,  P .  Kyosti,  M.  E.  Leinonen,  M.  Berg,
               rata,  N  Kukutsu,  Y  Kado,  S  Okabe,  T  Ikeda,  F  Su‑   and A. Parssinen. “THz Radio Communication: Link
               ginosita,  et  al.  “5.8‑km  10‑Gbps  data  transmission  Budget   Analysis   toward   6G”.   In:   IEEE
               over  a  120‑GHz‑band  wireless  link”.  In:  2010  IEEE  Communica‑  tions  Magazine  58.11  (2020),  pp.
               International  Conference  on  Wireless  Information  22–27.  DOI:  10 . 1109/MCOM.001.2000310.
               Technology and Systems. IEEE. 2010, pp. 1–4.
                                                               [17]  A. A. Boulogeorgos, E. N. Papasotiriou, and A. Alexiou.
           [8]  Hiroyuki Takahashi, Toshihiko Kosugi, Akihiko Hi‑    “A  Distance  and  Bandwidth  Dependent  Adaptive
               rata,  Jun  Takeuchi,  Koichi  Murata,  and  Naoya    Modulation  Scheme  for  THz  Communications”.  In:
               Kukutsu. “120‑GHz‑band fully integrated wireless      2018  IEEE  19th  International  Workshop  on  Signal
                                                                     Processing  Advances  in  Wireless  Communications
               link  using  QSPK  for  realtime  10‑Gbit/s  transmis‑
               sion”. In: IEEE transactions on microwave theory      (SPAWC).  2018,  pp.  1–5.  DOI:  10.1109/SPAWC.
               and techniques 61.12 (2013), pp. 4745–4753.           2018.8445864.





          28                                 © International Telecommunication Union, 2021
   35   36   37   38   39   40   41   42   43   44   45