Mobility-aware load balancing for hybrid LiFi and WiFi networks
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Harald Haas | Xiping Wu | H. Haas | Xiping Wu
[1] Joseph M. Kahn,et al. Wireless Infrared Communications , 1994 .
[2] Nada Golmie,et al. Vertical Handoff Decision Algorithms for Providing Optimized Performance in Heterogeneous Wireless Networks , 2009, IEEE Transactions on Vehicular Technology.
[3] M. S. Islim,et al. Towards 10 Gb/s orthogonal frequency division multiplexing-based visible light communication using a GaN violet micro-LED , 2017 .
[4] Mark Handley,et al. TCP Extensions for Multipath Operation with Multiple Addresses , 2020, RFC.
[5] Murat Uysal,et al. Channel Modeling and Characterization for Visible Light Communications , 2015, IEEE Photonics Journal.
[6] Harald Haas,et al. Distributed load balancing for Internet of Things by using Li-Fi and RF hybrid network , 2015, 2015 IEEE 26th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC).
[7] David A. Maltz,et al. Dynamic Source Routing in Ad Hoc Wireless Networks , 1994, Mobidata.
[8] Aesoon Park,et al. Analysis of WLAN to UMTS Handover , 2007, 2007 IEEE 66th Vehicular Technology Conference.
[9] Harald Haas,et al. Mobility Management for Hybrid LiFi and WiFi Networks in the Presence of Light-Path Blockage , 2018, 2018 IEEE 88th Vehicular Technology Conference (VTC-Fall).
[10] Harald Haas. Visible light communication , 2015, 2015 Optical Fiber Communications Conference and Exhibition (OFC).
[11] Harald Haas,et al. Access Point Selection for Hybrid Li-Fi and Wi-Fi Networks , 2017, IEEE Transactions on Communications.
[12] Fang Wang,et al. Efficient vertical handover scheme for heterogeneous VLC-RF systems , 2015, IEEE/OSA Journal of Optical Communications and Networking.
[13] Harald Haas,et al. Joint Optimisation of Load Balancing and Handover for Hybrid LiFi and WiFi Networks , 2017, 2017 IEEE Wireless Communications and Networking Conference (WCNC).
[14] Mark Handley,et al. TCP Extensions for Multipath Operation with Multiple Addresses , 2011 .
[15] Xiaoli Chu,et al. Mobility management challenges in 3GPP heterogeneous networks , 2012, IEEE Communications Magazine.
[16] Douglas Sicker,et al. The Wireless Spectrum Crunch , 2015 .
[17] H. Hashemi,et al. The indoor radio propagation channel , 1993, Proc. IEEE.
[18] Dominique Gaïti,et al. Enabling Vertical Handover Decisions in Heterogeneous Wireless Networks: A State-of-the-Art and A Classification , 2014, IEEE Communications Surveys & Tutorials.
[19] Eldad Perahia,et al. Next Generation Wireless LANs: 802.11n and 802.11ac , 2013 .
[20] Feng Liu,et al. A Pre-Scanning Fast Handoff Scheme for VoIP in WLANs , 2015 .
[21] Roberto Gaudino,et al. Plastic optical fiber technology for reliable home networking: overview and results of the EU project pof-all , 2009, IEEE Communications Magazine.
[22] Anna Maria Vegni,et al. A hybrid Radio Frequency and broadcast Visible Light Communication system , 2011, 2011 IEEE GLOBECOM Workshops (GC Wkshps).
[23] Mohsen Kavehrad,et al. Shadowing and blockage in indoor optical wireless communications , 2003, GLOBECOM '03. IEEE Global Telecommunications Conference (IEEE Cat. No.03CH37489).
[24] Tracy Camp,et al. Stationary distributions for the random waypoint mobility model , 2004, IEEE Transactions on Mobile Computing.
[25] Harald Haas,et al. Hybrid RF and VLC Systems: Improving User Data Rate Performance of VLC Systems , 2015, 2015 IEEE 81st Vehicular Technology Conference (VTC Spring).
[26] Harald Haas,et al. Dynamic Load Balancing With Handover in Hybrid Li-Fi and Wi-Fi Networks , 2015, Journal of Lightwave Technology.
[27] Lajos Hanzo,et al. Cooperative Load Balancing in Hybrid Visible Light Communications and WiFi , 2015, IEEE Transactions on Communications.
[28] Harald Haas,et al. What is LiFi? , 2015, 2015 European Conference on Optical Communication (ECOC).
[29] Junhai Luo,et al. Indoor Positioning Systems Based on Visible Light Communication: State of the Art , 2017, IEEE Communications Surveys & Tutorials.