An Efficient Fronthaul Scheme Based on Coaxial Cables for 5G Centralized Radio Access Networks
暂无分享,去创建一个
Diogo Acatauassu | Andre M. Cavalcante | Eduardo Medeiros | Marx Freitas | João C. W. A. Costa | Igor Almeida | Moyses Lica | Aline Ohashi | André Luís Teixeira Fernandes
[1] Jennifer Andreoli-Fang,et al. Mobile-aware scheduling for low latency backhaul over DOCSIS , 2017, 2017 IEEE 28th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC).
[2] Andrea Matera,et al. On the optimal Space-Frequency to Frequency mapping in indoor single-pair RoC fronthaul , 2017, 2017 European Conference on Networks and Communications (EuCNC).
[3] Umberto Spagnolini,et al. Wireless over cable for energy-efficient femtocell systems , 2010, 2010 IEEE Globecom Workshops.
[4] Navrati Saxena,et al. Next Generation 5G Wireless Networks: A Comprehensive Survey , 2016, IEEE Communications Surveys & Tutorials.
[5] Pin-Han Ho,et al. Low-complexity Optimal Scheduler for LTE Over LAN Cable , 2018, 2018 International Conference on Networking and Network Applications (NaNA).
[6] Umberto Spagnolini,et al. Radio over telephone lines in femtocell systems , 2010, 21st Annual IEEE International Symposium on Personal, Indoor and Mobile Radio Communications.
[7] Per Ödling,et al. Time-domain precoding for LTE-over-copper systems , 2016, 2016 IEEE International Conference on Communications (ICC).
[8] Nathan J Gomes,et al. Radio Over Fiber Link Design for Next Generation Wireless Systems , 2010, Journal of Lightwave Technology.
[9] Steve Hranilovic,et al. Network planning of uplink all-optical passive FSO/OF C-RAN fronthaul , 2019, IEEE/OSA Journal of Optical Communications and Networking.
[10] Lin Cheng,et al. Evolved Cable Access Networks to Support 5G Services , 2018, 2018 Optical Fiber Communications Conference and Exposition (OFC).
[11] Wolfgang Utschick,et al. Precoding Design for the MIMO-RoC Downlink , 2019, ICASSP 2019 - 2019 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP).
[12] Andrea Matera,et al. Analog MIMO Radio-Over-Copper Downlink With Space-Frequency to Space-Frequency Multiplexing for Multi-User 5G Indoor Deployments , 2019, IEEE Transactions on Wireless Communications.
[13] Andrea Matera,et al. Analog MIMO-RoC Downlink With SF2SF , 2019, IEEE Wireless Communications Letters.
[14] U. Spagnolini,et al. Analog MIMO RoC Passive Relay for Indoor Deployments of Wireless Networks , 2020, IEEE Transactions on Circuits and Systems II: Express Briefs.
[15] Chenguang Lu. Connecting the dots : small cells shape up for high-performance indoor radio In , 2014 .
[16] Carla Raffaelli,et al. Radio and Transport Planning of Centralized Radio Architectures in 5G Indoor Scenarios , 2017, IEEE Journal on Selected Areas in Communications.
[17] Andrea Matera,et al. Space-frequency to space-frequency for MIMO radio over copper , 2017, 2017 IEEE International Conference on Communications (ICC).
[18] George J. Anders,et al. Cost related reliability measures for power system equipment , 2000 .
[19] Andrea Matera,et al. On the Transport Capability of LAN Cables in All-Analog MIMO-RoC Fronthaul , 2017, 2017 IEEE Wireless Communications and Networking Conference (WCNC).
[20] Aleksandra Checko,et al. A Survey of the Functional Splits Proposed for 5G Mobile Crosshaul Networks , 2019, IEEE Communications Surveys & Tutorials.
[21] Carmen Mas Machuca,et al. Cost vs. reliability performance study of fiber access network architectures , 2010, IEEE Communications Magazine.
[22] Martin Reisslein,et al. R-FFT: Function Split at IFFT/FFT in Unified LTE CRAN and Cable Access Network , 2017, IEEE Transactions on Broadcasting.
[23] André Fernandes,et al. A Techno-Economic Assessment of 5G Networks with Passive Optical Network-Based Mobile Backhaul and Hybrid Fiber-Copper Fronthaul , 2019, SBRC.
[24] Muhammad Ali Imran,et al. 5G Backhaul Challenges and Emerging Research Directions: A Survey , 2016, IEEE Access.
[25] Erez Biton,et al. Wireless over CATV: an alternative wireless topology , 2004, 2004 IEEE 15th International Symposium on Personal, Indoor and Mobile Radio Communications (IEEE Cat. No.04TH8754).
[26] Francis Zane,et al. The economics of fiber to the home revisited , 2003, Bell Labs Technical Journal.
[27] Norvald Stol,et al. CAPEX and OPEX simulation study of cost-efficient protection mechanisms in passive optical networks , 2015, Opt. Switch. Netw..
[28] Jennifer Andreoli-Fang,et al. Latency Reduction for Mobile Backhaul by Pipelining LTE and DOCSIS , 2017, GLOBECOM 2017 - 2017 IEEE Global Communications Conference.
[29] Per Ödling,et al. KHM cable model parameters for ITU-T G.fast reference loops , 2015, 2015 IEEE Conference on Standards for Communications and Networking (CSCN).
[30] Koen Casier. Techno-economic evaluation of a next generation access network deployment in a competitive setting , 2009 .
[31] Andrea Matera,et al. Analog MIMO Radio-over-Copper: Prototype and Preliminary Experimental Results , 2018, 2019 16th International Symposium on Wireless Communication Systems (ISWCS).
[32] Michael S. Berger,et al. Cloud RAN for Mobile Networks—A Technology Overview , 2015, IEEE Communications Surveys & Tutorials.
[33] Ming Zhu,et al. A Novel Multi-Service Small-Cell Cloud Radio Access Network for Mobile Backhaul and Computing Based on Radio-Over-Fiber Technologies , 2013, Journal of Lightwave Technology.
[34] Diogo Acatauassu,et al. Coaxial Networks for 5G Fronthaul , 2018, 2018 IEEE 23rd International Workshop on Computer Aided Modeling and Design of Communication Links and Networks (CAMAD).
[35] Howard W. Johnson,et al. High Speed Signal Propagation: Advanced Black Magic , 2003 .
[36] Jennifer Andreoli-Fang,et al. Low latency techniques for mobile backhaul over DOCSIS , 2018, 2018 IEEE Wireless Communications and Networking Conference (WCNC).
[37] Gerald Matz,et al. Wireless over cable in femtocell systems: A case study from indoor channel measurements , 2012, 2012 IEEE Wireless Communications and Networking Conference Workshops (WCNCW).
[38] Shahida Jabeen,et al. A Novel Distributed Antenna Access Architecture for 5G Indoor Service Provisioning , 2018, IEEE Journal on Selected Areas in Communications.
[39] Per Ödling,et al. Crosstalk Mitigation for LTE-Over-Copper in Downlink Direction , 2016, IEEE Communications Letters.
[40] Paulo Pereira Monteiro,et al. Toward an Efficient C-RAN Optical Fronthaul for the Future Networks: A Tutorial on Technologies, Requirements, Challenges, and Solutions , 2018, IEEE Communications Surveys & Tutorials.
[41] Jeffrey G. Andrews,et al. What Will 5G Be? , 2014, IEEE Journal on Selected Areas in Communications.
[42] U. Spagnolini,et al. Wireless over cable for femtocell systems , 2013, IEEE Communications Magazine.
[43] Gert-Jan Stockman,et al. Fiber to the Tap: Pushing Coaxial Cable Networks to Their Limits , 2019, IEEE Communications Magazine.
[44] Per Ödling,et al. Enabling DSL and radio on the same copper pair , 2015, 2015 IEEE International Conference on Communications (ICC).
[45] Per Ödling,et al. LTE over copper — Potential and limitations , 2015, 2015 IEEE 26th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC).
[46] Umberto Spagnolini,et al. LTE femtocell system through amplify-and-forward over cable links , 2010, 2010 IEEE Globecom Workshops.