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