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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 7
[56] Y . Medjahdi, S. Traverso, R. Gerzaguet, H. Shaı̈ek, [66] O. Tsilipakos, A. C. Tasolamprou, A. Pitilakis,
R. Zayani, D. Demmer, R. Zakaria, J. Doré, M. Ben F. Liu, X. Wang, M. S. Mirmoosa, D. C. Tzarouchis,
Mabrouk, D. Le Ruyet, Y . Louët, and D. Roviras, “On S. Abadal, H. Taghvaee, C. Liaskos, A. Tsioliari‑
the Road to 5G: Comparative Study of Physi‑ cal dou, J. Georgiou, A. Cabellos‑Aparicio, E. AlarcA ³n,
Layer in MTC Context,” IEEE Access, vol. 5, pp. 26 S. Ioannidis, A. Pitsillides, I. F. Akyildiz, N. V.
556–26 581, 2017. Kantartzis, E. N. Economou, C. M. Soukoulis,
M. Kafesaki, and S. Tretyakov, “Toward Intelligent
[57] C. Han, A. O. Bicen, and I. F . Akyildiz, “Multi‑ Metasurfaces: The Progress from Globally Tunable
Wideband Waveform Design for Distance‑Adaptive Metasurfaces to Software‑De ined Metasurfaces
Wireless Communications in the Terahertz Band,” with an Embedded Network of Controllers,” Ad‑
IEEE Transactions on Signal Processing, vol. 64, vanced Optical Materials, vol. 8, no. 17, p. 2000783,
no. 4, pp. 910–922, Feb 2016. 2020. [Online]. Available: https://onlinelibrary.
wiley.com/doi/abs/10.1002/adom.202000783
[58] J. M. Jornet and I. F . Akyildiz, “Femtosecond‑Long
Pulse‑Based Modulation for Terahertz Band Com‑ [67] E. Basar, M. Di Renzo, J. De Rosny, M. Debbah, M. S.
munication in Nanonetworks,” IEEE Transactions Alouini, and R. Zhang, “Wireless Communications
on Communications, vol. 62, no. 5, pp. 1742–1754, Through Recon igurable Intelligent Surfaces,” IEEE
2014. Access, vol. 7, pp. 116 753–116 773, 2019.
[68] M. Di Renzo, M. Debbah, D.‑T . Phan‑Huy, A. Zap‑
[59] Z. Hossain and J. M. Jornet, “Hierarchical Band‑
pone, M. S. Alouini, C. Yuen, V . Sciancalepore,
width Modulation for Ultra‑Broadband Terahertz G. Alexandropoulos, J. Hoydis, H. Gacanin, J. D.
Communications,” in ICC 2019 ‑ 2019 IEEE Interna‑
Rosny, A. Bounceur, G. Lerosey, and M. Fink,
tional Conference on Communications (ICC), 2019,
“Smart Radio Environments Empowered by Re‑
pp. 1–7.
con igurable AI Meta‑Surfaces: An Idea Whose
Time Has Come,” EURASIP Journal on Wireless Com‑
[60] L. Dai, B. Wang, Z. Ding, Z. Wang, S. Chen, and
munications and Networking, no. 129, 2019.
L. Hanzo, “A Survey of Non‑Orthogonal Multiple
Access for 5G,” IEEE Communications Surveys Tuto‑ [69] R. Alghamdi, R. Alhadrami, D. Alhothali, H. Al‑
rials, vol. 20, no. 3, pp. 2294–2323, 2018. morad, A. Faisal, S. Helal, R. Shalabi, R. Asfour,
N. Hammad, A. Shams, N. Saeed, H. Dahrouj, T . Y .
[61] X. Zhang, C. Han, and X. Wang, “Joint Beamforming‑ Al‑Naffouri, and M. S. Alouini, “Intelligent Surfaces
Power‑Bandwidth Allocation in Terahertz NOMA for 6G Wireless Networks: A Survey of Optimiza‑
Networks,” in 2019 16th Annual IEEE International tion and Performance Analysis Techniques,” IEEE
Conference on Sensing, Communication, and Net‑ Access, vol. 8, pp. 202 795–202 818, 2020.
working (SECON), 2019, pp. 1–9.
[70] C. Chaccour, M. N. Soorki, W. Saad, M. Bennis, and
P. Popovski, “Risk‑Based Optimization of Virtual
[62] A. A. Boulogeorgos, E. N. Papasotiriou, and A. Ale-
Reality over Terahertz Recon igurable Intelligent
xiou, “A Distance and Bandwidth Dependent
Surfaces,” in ICC 2020 ‑ 2020 IEEE International
Adaptive Modulation Scheme for THz Commu-
nications,” in 2018 IEEE 19th International Conference on Communications (ICC), 2020, pp. 1–6.
Workshop on Sig‑ nal Processing Advances in [71] A.‑A. A. Boulogeorgos and A. Alexiou, “Coverage
Wireless Communica‑ tions (SPAWC), 2018, pp. 1–5. Analysis of Recon igurable Intelligent Surface
Assisted THz Wireless Systems,” IEEE Open Journal
[63] I. Akyildiz and J. Jornet, “Realizing Ultra‑Massive of Vehicular Technology, vol. 2, pp. 94–110, 2021.
MIMO (1024 x 1024) Communication in the (0.06‑
10) Terahertz Band,” Nano Communication Net‑ [72] X. Ma, Z. Chen, W. Chen, Y . Chi, Z. Li, C. Han, and
works, vol. 8, pp. 46–54, 6 2016. Q. Wen, “Intelligent Re lecting Surface Enhanced
Indoor Terahertz Communication Systems,” Nano
[64] P . Chandhar and E. G. Larsson, “Massive MIMO for Communication Networks, vol. 24, p. 100284, 2020.
Connectivity With Drones: Case Studies and Fu‑
[73] N. Abuzainab, M. Alrabeiah, A. Alkhateeb, and Y . E.
ture Directions,” IEEE Access, vol. 7, pp. 94 676–
Sagduyu, “Deep Learning for THz Drones with
94 691, 2019.
Flying Intelligent Surfaces: Beam and Handoff
Prediction,” arXiv, 2021. [Online]. Available:
[65] A. Liao, Z. Gao, D. Wang, H. Wang, H. Yin, D. W. K. Ng,
https: //arxiv.org/abs/2102.11222
and M.‑S. Alouini, “Terahertz Ultra‑Massive MIMO‑
Based Aeronautical Communications in Space‑Air‑ [74] M. Matinmikko‑Blue, S. Yrj lä, and P . Ahokangas,
Ground Integrated networks,” IEEE Journal on Se‑ “Spectrum Management in the 6G Era: The Role of
lected Areas in Communications, vol. 39, no. 6, pp. Regulation and Spectrum Sharing,” in 2020 2nd 6G
1741–1767, 2021. Wireless Summit (6G SUMMIT), 2020, pp. 1–5.
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