Towards flexbile SDN-based management for cloud-based mobile networks
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[1] José Costa-Requena,et al. Software defined 5G mobile backhaul , 2014, 1st International Conference on 5G for Ubiquitous Connectivity.
[2] Holger Karl,et al. Dynamic Backhaul Network Configuration in SDN-based Cloud RANs , 2015, ArXiv.
[3] Yan Wang,et al. Mobileflow: Toward software-defined mobile networks , 2013, IEEE Communications Magazine.
[4] Matteo Artuso,et al. Cloudification of mmwave-based and packet-based fronthaul for future heterogeneous mobile networks , 2015, IEEE Wireless Communications.
[5] Sampath Rangarajan,et al. EXTREMELY DENSE WIRELESS NETWORKS , 2022 .
[6] W. Buck,et al. MININET , 1979, Prax. Inf.verarb. Kommun..
[7] Dirk Wübben,et al. Cloud technologies for flexible 5G radio access networks , 2014, IEEE Communications Magazine.
[8] Lena Wosinska,et al. Transport Abstraction Models for an SDN-Controlled Centralized RAN , 2015, IEEE Communications Letters.
[9] Xin Jin,et al. SoftCell: Taking Control of Cellular Core Networks , 2013, ArXiv.
[10] Michael S. Berger,et al. Cloud RAN for Mobile Networks—A Technology Overview , 2015, IEEE Communications Surveys & Tutorials.
[11] Sachin Katti,et al. SoftRAN: software defined radio access network , 2013, HotSDN '13.
[12] José Costa-Requena. SDN integration in LTE mobile backhaul networks , 2014, The International Conference on Information Networking 2014 (ICOIN2014).
[13] Vincenzo Mancuso,et al. An SDN-Based Network Architecture for Extremely Dense Wireless Networks , 2013, 2013 IEEE SDN for Future Networks and Services (SDN4FNS).
[14] Xin Jin,et al. SoftCell: scalable and flexible cellular core network architecture , 2013, CoNEXT.
[15] Antonio de la Oliva,et al. An architecture for software defined wireless networking , 2014, IEEE Wireless Communications.
[16] P. Chanclou,et al. Things you should know about fronthaul , 2014, 2014 The European Conference on Optical Communication (ECOC).