Evaluating the Energy Consumption of Mobile Data Transfer—From Technology Development to Consumer Behaviour and Life Cycle Thinking
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[1] J. Hertin,et al. De-materialising and re-materialising: digital technologies and the environment , 2004 .
[2] Olivier Jolliet,et al. Life cycle assessment of second generation (2G) and third generation (3G) mobile phone networks. , 2006, Environment international.
[3] Brett H Robinson,et al. E-waste: an assessment of global production and environmental impacts. , 2009, The Science of the total environment.
[4] Thomas L. Marzetta,et al. Noncooperative Cellular Wireless with Unlimited Numbers of Base Station Antennas , 2010, IEEE Transactions on Wireless Communications.
[5] A. Nissinen,et al. An assessment of greenhouse gas emissions and material flows caused by the Finnish economy using the ENVIMAT model , 2011 .
[6] Lajos Hanzo,et al. Green radio: radio techniques to enable energy-efficient wireless networks , 2011, IEEE Communications Magazine.
[7] Lorenz M. Hilty,et al. The Direct Energy Demand of Internet Data Flows , 2013 .
[8] Rolf Widmer,et al. Material and Energy Flows and Environmental Impacts of the Internet in Switzerland , 2013 .
[9] Yan Chen,et al. On functionality separation for green mobile networks: concept study over LTE , 2013, IEEE Communications Magazine.
[10] Yevgeniya Arushanyan,et al. Environmental performance of Alma Media's online and print products , 2013 .
[11] Paul Shabajee,et al. Modeling and Assessing Variability in Energy Consumption During the Use Stage of Online Multimedia Services , 2013 .
[12] Claude Desset,et al. Modeling the hardware power consumption of large scale antenna systems , 2014, 2014 IEEE Online Conference on Green Communications (OnlineGreenComm).
[13] Robert W. Heath,et al. Five disruptive technology directions for 5G , 2013, IEEE Communications Magazine.
[14] M. M. Aftab Hossain,et al. Dimensioning of PA for massive MIMO system with load adaptive number of antennas , 2014, 2014 IEEE Globecom Workshops (GC Wkshps).
[15] Hanna Pihkola,et al. End-user perspectives on environmental sustainability and communication - Case study on media use , 2014 .
[16] An Overview of Massive MIMO: Benefits and Challenges , 2014, IEEE Journal of Selected Topics in Signal Processing.
[17] A. Lee Swindlehurst,et al. Millimeter-wave massive MIMO: the next wireless revolution? , 2014, IEEE Communications Magazine.
[18] Michail Katsigiannis,et al. Energy consumption of radio access networks in Finland , 2014, Telecommun. Syst..
[19] Chenyang Yang,et al. Energy efficiency comparison of massive MIMO and small cell network , 2014, 2014 IEEE Global Conference on Signal and Information Processing (GlobalSIP).
[20] Dag Lunden,et al. Life Cycle Assessment of ICT , 2014 .
[21] Göran Finnveden,et al. Lessons learned - Review of LCAs for ICT products and services , 2014, Comput. Ind..
[22] Chris Preist,et al. Approaches to energy intensity of the internet , 2014, IEEE Communications Magazine.
[23] Lorenz M. Hilty,et al. ICT for Sustainability: An Emerging Research Field , 2015, ICT Innovations for Sustainability.
[24] Daniel Schien,et al. Grey Energy and Environmental Impacts of ICT Hardware , 2015, ICT Innovations for Sustainability.
[25] Mohammad Ahmadi Achachlouei. Exploring the Effects of ICT on Environmental Sustainability: From Life Cycle Assessment to Complex Systems Modeling , 2015 .
[26] Geoffrey Ye Li,et al. Recent advances in energy-efficient networks and their application in 5G systems , 2015, IEEE Wireless Communications.
[27] Emil Björnson,et al. Optimal Design of Energy-Efficient Multi-User MIMO Systems: Is Massive MIMO the Answer? , 2014, IEEE Transactions on Wireless Communications.
[28] Lorenz M. Hilty,et al. The Energy Intensity of the Internet: Home and Access Networks , 2015, ICT Innovations for Sustainability.
[29] Bran Knowles,et al. Exploring (un)sustainable growth of digital technologies in the home , 2015, EnviroInfo/ICT4S.
[31] Rolf Widmer,et al. The Material Basis of ICT , 2015, ICT Innovations for Sustainability.
[32] Patrick A. Wäger,et al. The Transition from Desktop Computers to Tablets: A Model for Increasing Resource Efficiency? , 2015, ICT Innovations for Sustainability.
[33] Anders S. G. Andrae,et al. On Global Electricity Usage of Communication Technology: Trends to 2030 , 2015 .
[34] Inês L. Azevedo,et al. Known unknowns: indirect energy effects of information and communication technology , 2016 .
[35] H. Vincent Poor,et al. A Survey of Energy-Efficient Techniques for 5G Networks and Challenges Ahead , 2016, IEEE Journal on Selected Areas in Communications.
[36] Aarne Mämmelä,et al. Unequal Power Amplifier Dimensioning for Adaptive Massive MIMO Base Stations , 2016, 2016 IEEE 83rd Vehicular Technology Conference (VTC Spring).
[37] J. Malmodin,et al. The energy and carbon footprint of the ICT and E&M sector in Sweden 1990-2015 and beyond , 2016 .
[38] Antti Anttonen,et al. Why Will Computing Power Need Particular Attention in Future Wireless Devices? , 2017, IEEE Circuits and Systems Magazine.
[39] Xiaohu Ge,et al. Energy Efficiency Challenges of 5G Small Cell Networks , 2017, IEEE Communications Magazine.
[40] J. Koomey,et al. Electricity Intensity of Internet Data Transmission: Untangling the Estimates , 2018 .
[41] H. M. Baskonus,et al. Advances in Intelligent Systems and Computing , 2022, Smart Innovation, Systems and Technologies.