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ITU Journal on Future and Evolving Technologies, Volume 2 (2021), Issue 6
[45] B. Han, V. Sciancalepore, X. Costa‑Pérez, D. Feng, [55] Monowar Hasan, Sibin Mohan, Takayuki Shimizu,
and H. D. Schotten. “Multiservice‑based Network and Hongsheng Lu. “Securing Vehicle‑to‑
Slicing Orchestration with Impatient Tenants”. In: Everything (V2X) Communication Platforms”.
IEEE Transactions on Wireless Communications In: IEEE Transactions on Intelligent Vehicles 5.4
(2020), pp. 1–1. (2020), pp. 693–713. DOI: 10.1109/TIV.2020.
[46] Vlastimil Křivan. “The Lotka‑Volterra predator‑ 2987430.
prey model with foraging–predation risk trade‑ [56] M. Gonzalez‑Martı́n, M. Sepulcre, R. Molina‑
offs”. In: The American Naturalist 170.5 (2007), Masegosa, and J. Gozalvez. “Analytical Models of
pp. 771–782. the Performance of C‑V2X Mode 4 Vehicular Com‑
munications”. In: IEEE Transactions on Vehicular
[47] M. Usman, M. Qaraqe, M. R. Asghar, A. A. Gebre‑
Technology 68.2 (Feb. 2019). ISSN: 0018‑9545. DOI:
mariam, I. S. Ansari, F. Granelli, and Q. H. Abbasi.
10.1109/TVT.2018.2888704.
“A Business and Legislative Perspective of V2X and
Mobility Applications in 5G Networks”. In: IEEE Ac‑ [57] Haojun Yang, Kan Zheng, Kuan Zhang, Jie Mei, and
cess 8 (2020), pp. 67426–67435. Yi Qian. “Ultra‑Reliable and Low‑Latency Commu‑
[48] Stephen O. Ekwe, Sunday O. Oladejo, Lateef A. nications for Connected Vehicles: Challenges and
Akinyemi, and Neco Ventura. “A Socially‑Inspired Solutions”. In: IEEE Network 34.3 (2020), pp. 92–
Energy‑Ef icient Resource Allocation Algorithm for 100. DOI: 10.1109/MNET.011.1900242.
Future Wireless Network”. In: 2020 16th Interna‑ [58] G. Naik, B. Choudhury, and J. Park. “IEEE 802.11bd
tional Computer Engineering Conference (ICENCO). 5G NR V2X: Evolution of Radio Access Technologies
2020, pp. 168–173. DOI: 10.1109/ICENCO49778. for V2X Communications”. In: IEEE Access 7 (2019),
2020.9357387. pp. 70169–70184. ISSN: 2169‑3536. DOI: 10.1109/
[49] Iftikhar Rasheed and Fei Hu. “Intelligent super‑fast ACCESS.2019.2919489.
Vehicle‑to‑Everything 5G communications with [59] V. Lakshminarasimhan and A. Knoll. “C‑V2X Re‑
predictive switching between mmWave and THz source Deployment Architecture Based on Mov‑
links”. In: Vehicular Communications 27 (2021), ing Network Convoys”. In: 2020 IEEE 91st Vehicu‑
p. 100303. ISSN: 2214‑2096. DOI: https://doi. lar Technology Conference (VTC2020‑Spring). 2020,
org/10.1016/j.vehcom.2020.100303. pp. 1–6.
[50] Zilong Liu, Haeyoung Lee, M Omar Khyam, Jian‑ [60] Dapeng Wu and R. Negi. “Effective capacity: a wire‑
hua He, Dirk Pesch, Klaus Moessner, Walid Saad, H less link model for support of quality of service”.
Vincent Poor, et al. “6G for Vehicle‑to‑Everything In: IEEE Transactions on Wireless Communications
(V2X) Communications: Enabling Technologies, 2.4 (July 2003), pp. 630–643. ISSN: 1536‑1276. DOI:
Challenges, and Opportunities”. In: arXiv preprint 10.1109/TWC.2003.814353.
arXiv:2012.07753 (2020).
[61] Dapeng Wu and R. Negi. “Effective capacity‑based
[51] Jihong Park, Sumudu Samarakoon, Hamid Shiri, quality of service measures for wireless networks”.
Mohamed K Abdel‑Aziz, Takayuki Nishio, Anis El‑ In: First International Conference on Broadband
gabli, and Mehdi Bennis. “Extreme URLLC: Vision, Networks. Oct. 2004, pp. 527–536. DOI: 10.1109/
challenges, and key enablers”. In: arXiv preprint BROADNETS.2004.36.
arXiv:2001.09683 (2020). [62] S. O. Oladejo and O. E. Falowo. “Latency‑Aware Dy‑
[52] M. K. Abdel‑Aziz, S. Samarakoon, M. Bennis, and W. namic Resource Allocation Scheme for 5G Hetero‑
Saad. “Ultra‑Reliable and Low‑Latency Vehicular geneous Network: A Network Slicing‑Multitenancy
Communication: An Active Learning Approach”. In: Scenario”. In: 2019 International Conference on
IEEE Communications Letters 24.2 (2020), pp. 367– Wireless and Mobile Computing, Networking and
370. Communications (WiMob). Oct. 2019, pp. 1–7.
[53] H. Zhou, W. Xu, J. Chen, and W. Wang. “Evolutionary [63] L. Liang, G. Y. Li, and W. Xu. “Resource Allocation for
V2X Technologies Toward the Internet of Vehicles: D2D‑Enabled Vehicular Communications”. In: IEEE
Challenges and Opportunities”. In: Proceedings of Transactions on Communications 65.7 (July 2017),
the IEEE 108.2 (2020), pp. 308–323. pp. 3186–3197. DOI: 10 . 1109 / TCOMM . 2017 .
[54] Jian Wang, Yameng Shao, Yancong Wang, Yum‑ 2699194.
ing Ge, and Rundong Yu. “Physical Layer Authen‑ [64] C. Guo, L. Liang, and G. Y. Li. “Resource Allocation
tication Based on Nonlinear Kalman Filter for for High‑Reliability Low‑Latency Vehicular Com‑
V2X Communication”. In: IEEE Access 8 (2020), munications With Packet Retransmission”. In: IEEE
pp. 163746–163757. DOI: 10.1109/ACCESS.2020. Transactions on Vehicular Technology 68.7 (July
3022247. 2019), pp. 6219–6230. ISSN: 1939‑9359. DOI: 10.
1109/TVT.2019.2919181.
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