On the quality of service of next generation green networks
暂无分享,去创建一个
[1] Nirwan Ansari,et al. Powering mobile networks with green energy , 2014, IEEE Wireless Communications.
[2] Hamed S. Al-Raweshidy,et al. Modelling the power consumption and trade-offs of virtualised cloud radio access networks , 2017, IET Commun..
[3] Raad S. Alhumaima,et al. Performance Analysis of Fog-Based Radio Access Networks , 2019, IEEE Access.
[4] Hamed S. Al-Raweshidy,et al. Green Network Costs of 5G and Beyond, Expectations Vs Reality , 2018, IEEE Access.
[5] H. Vincent Poor,et al. Energy-Efficient Resource Allocation Optimization for Multimedia Heterogeneous Cloud Radio Access Networks , 2016, IEEE Transactions on Multimedia.
[6] Hamed S. Al-Raweshidy,et al. Maximizing the Energy Efficiency of Virtualized C-RAN via Optimizing the Number of Virtual Machines , 2018, IEEE Transactions on Green Communications and Networking.
[7] Hamed S. Al-Raweshidy,et al. Component and parameterised power model for cloud radio access network , 2016, IET Commun..
[8] Federico Dell’Anna. Green jobs and energy efficiency as strategies for economic growth and the reduction of environmental impacts , 2021 .
[9] Jinsong Wu,et al. Green wireless communications: from concept to reality [Industry Perspectives] , 2012, IEEE Wireless Communications.
[10] Jinsong Wu,et al. Survey of Strategies for Switching Off Base Stations in Heterogeneous Networks for Greener 5G Systems , 2016, IEEE Access.
[11] Tho Le-Ngoc,et al. Leveraging green communications for carbon emission reductions: Techniques, testbeds, and emerging carbon footprint standards , 2011, IEEE Communications Magazine.
[12] Song Guo,et al. Information and Communications Technologies for Sustainable Development Goals: State-of-the-Art, Needs and Perspectives , 2018, IEEE Communications Surveys & Tutorials.
[13] Honggang Zhang,et al. Green communications: Theoretical fundamentals, algorithms, and applications , 2012 .
[14] Hamed S. Al-Raweshidy,et al. Evaluating the energy efficiency of software defined-based cloud radio access networks , 2016, IET Commun..
[15] Zhigang Chen,et al. Resource Allocation for Green Cloud Radio Access Networks With Hybrid Energy Supplies , 2017, IEEE Transactions on Vehicular Technology.
[16] Raad S. Alhumaima,et al. Mitigating X2-AP interface cost using quantum teleportation , 2020, IET Networks.
[17] Song Guo,et al. Green Industrial Internet of Things Architecture: An Energy-Efficient Perspective , 2016, IEEE Communications Standards.
[18] Jiaheng Wang,et al. Energy-Efficient Resource Assignment and Power Allocation in Heterogeneous Cloud Radio Access Networks , 2014, IEEE Transactions on Vehicular Technology.
[19] Song Guo,et al. Big Data Meet Green Challenges: Big Data Toward Green Applications , 2016, IEEE Systems Journal.
[20] Sudip Misra,et al. Theoretical modelling of fog computing: a green computing paradigm to support IoT applications , 2016, IET Networks.
[21] Lajos Hanzo,et al. Green radio: radio techniques to enable energy-efficient wireless networks , 2011, IEEE Communications Magazine.
[22] Raad S. Alhumaima,et al. Energy efficiency and latency analysis of fog networks , 2020, China Communications.
[23] Chengwen Xing,et al. Energy-Efficient Power Control for Device-to-Device Communications , 2016, IEEE Journal on Selected Areas in Communications.
[24] Athanasios V. Vasilakos,et al. A Survey of Green Mobile Networks: Opportunities and Challenges , 2012, Mob. Networks Appl..
[25] 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.
[26] Xiaohu Ge,et al. Energy efficiency of small cell backhaul networks based on Gauss-Markov mobile models , 2015, IET Networks.
[27] Hyungsik Ju,et al. Throughput Maximization in Wireless Powered Communication Networks , 2013, IEEE Trans. Wirel. Commun..
[28] Hamed S. Al-Raweshidy,et al. Performance Analysis of Quantum Based Cloud Radio Access Networks , 2020, IEEE Access.
[29] Giuseppe Piro,et al. HetNets Powered by Renewable Energy Sources: Sustainable Next-Generation Cellular Networks , 2013, IEEE Internet Computing.
[30] Geoffrey Ye Li,et al. Fundamental trade-offs on green wireless networks , 2011, IEEE Communications Magazine.
[31] M. Mahdavi,et al. A New Relay Policy in RF Energy Harvesting for IoT Networks—A Cooperative Network Approach , 2018, IEEE Internet of Things Journal.
[32] Guowang Miao,et al. Energy and Spectral Efficiency of Cellular Networks With Discontinuous Transmission , 2017, IEEE Transactions on Wireless Communications.
[33] N. Gisin,et al. Combined effects of polarization mode dispersion and polarization dependent losses in optical fibers , 1997 .
[34] L. Eyraud,et al. Green investment: Trends and determinants , 2013 .
[35] D. Hess. Good Green Jobs in a Global Economy , 2012 .