Toward Virtualized Optical-Wireless Heterogeneous Networks

被引:6
作者
Vujicic, Zoran [1 ]
Santos, Maria C. [2 ]
Mendez, Rodrigo [2 ]
Klaiqi, Bleron [3 ]
Rodriguez, Jonathan [4 ]
Gelabert, Xavier [3 ]
Rahman, Md Arifur [5 ]
Gaudino, Roberto [6 ]
机构
[1] Univ Aveiro, Inst Telecomunicacoes, Dept Elect Telecommun & Informat, P-3810193 Aveiro, Portugal
[2] Univ Politecn Cataluna, Signal Theory & Commun Dept, Barcelona 08034, Spain
[3] Stockholm Res Ctr, Huawei Technol Sweden AB, S-16440 Kista, Sweden
[4] Univ South Wales, Fac Comp Engn & Sci, Pontypridd CF37 1DL, England
[5] IS Wireless, PL-05500 Piaseczno, Poland
[6] Politecn Torino, Dipartimento Elett & Telecomunicazioni DET, I-10129 Turin, Italy
基金
英国科研创新办公室;
关键词
Computer architecture; 6G mobile communication; Passive optical networks; Microprocessors; Technological innovation; Heterogeneous networks; Bandwidth; Radio access networks; Optical fiber communication; Software defined networking; 6G networks; cell densification; C-RAN; dynamic centralization; mm-Wave; optical access networks; optical Fronthaul virtualization; optical software defined transceivers; passive optical networks; stochastic geometry; ultra-dense cells; DYNAMIC BANDWIDTH ALLOCATION; FLEXIBLE FUNCTIONAL SPLIT; INTER-ONU COMMUNICATIONS; MOBILE FRONTHAUL; RESOURCE-ALLOCATION; SPECTRAL EFFICIENCY; MILLIMETER-WAVE; BEAM SELECTION; OVER-FIBER; TRANSMISSION;
D O I
10.1109/ACCESS.2024.3417358
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Towards supporting a myriad of new services and applications under highly heterogeneous operating conditions, while dynamically adapting to capacity and quality-of-service (QoS) demands, the sixth generation (6G) communication systems are required to undergo significant advances. Along with the proliferation of devices, a multitude of challenges remain towards aspired performance, versatility, security, and cost-effectiveness of next generation networks. The aim of this work is to identify said challenges and promising approaches, within the scenario of dense and complex urban deployments enabled by optical-wireless coexistence. Towards enabling such operation scenario, our 6G vision focuses on various aspects of four main innovation paradigms. First, as future systems target network capacities beyond the capabilities of current technologies, the scientific trend of pursuing radio frequencies edging towards the THz domain continues. To ensure reliable and efficient deployment and mobility under the cell densification paradigm, particularly in complex urban environments, novel approaches are required to address the challenges as latency, signal blockages, and unreliable handovers. Second, towards enabling efficient operation under the heterogeneous scenario, we highlight the cooperative coexistence paradigm as a key feature of the underlying physical layer architecture. Third, joint and holistic resource optimization is required towards dynamically optimized support of mm-wave and sub-THz operation while retaining legacy coexistence, where we consider features that may benefit from the research paths proposed within the second paradigm. Fourth, network security is identified as critical towards the market adoption of technologies proposed within the first paradigm, where we highlight aspects unique to our scenario and network vision. We provide a comprehensive overview of promising state-of-the-art approaches and identify relevant research gaps while holistically addressing the four aforementioned innovation paradigms.
引用
收藏
页码:87776 / 87806
页数:31
相关论文
共 197 条
[1]  
100G-EPON Task Force, 2020, Standard IEEE 802.3ca-2020
[2]   Toward Intelligent Millimeter and Terahertz Communication for 6G: Computer Vision-Aided Beamforming [J].
Ahn, Yongjun ;
Kim, Jinhong ;
Kim, Seungnyun ;
Shim, Kyuhong ;
Kim, Jiyoung ;
Kim, Sangtae ;
Shim, Byonghyo .
IEEE WIRELESS COMMUNICATIONS, 2023, 30 (05) :179-186
[3]   6G and Beyond: The Future of Wireless Communications Systems [J].
Akyildiz, Ian F. ;
Kak, Ahan ;
Nie, Shuai .
IEEE ACCESS, 2020, 8 :133995-134030
[4]  
Alfadhli Y, 2018, 2018 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXPOSITION (OFC)
[5]   Integration of Hybrid Networks, AI, Ultra Massive-MIMO, THz Frequency, and FBMC Modulation Toward 6G Requirements: A Review [J].
Alhaj, Nura Abdalrhman ;
Jamlos, Mohd Faizal ;
Manap, Sulastri Abdul ;
Abdelsalam, Samah ;
Bakhit, Abdelmoneim A. ;
Mamat, Rizalman ;
Jamlos, Mohd Aminudin ;
Gismalla, Mohammed Salih Mohammed ;
Hamdan, Mosab .
IEEE ACCESS, 2024, 12 :483-513
[6]   A Review of Self-Coherent Optical Transceivers: Fundamental Issues, Recent Advances, and Research Directions [J].
Alimi, Isiaka ;
Patel, Romil ;
Silva, Nuno ;
Sun, Chuanbowen ;
Ji, Honglin ;
Shieh, William ;
Pinto, Armando ;
Muga, Nelson .
APPLIED SCIENCES-BASEL, 2021, 11 (16)
[7]   Deep Learning Coordinated Beamforming for Highly-Mobile Millimeter Wave Systems [J].
Alkhateeb, Ahmed ;
Alex, Sam ;
Varkey, Paul ;
Li, Ying ;
Qu, Qi ;
Tujkovic, Djordje .
IEEE ACCESS, 2018, 6 :37328-37348
[8]   Future (post-COVID) digital, smart and sustainable cities in the wake of 6G: Digital twins, immersive realities and new urban economies [J].
Allam, Zaheer ;
Jones, David S. .
LAND USE POLICY, 2021, 101
[9]  
[Anonymous], 2020, Standard GSTR-TN5G
[10]  
[Anonymous], 2017, Standard TR38.816, V15.0.0