Title :
Multi-Path TCP with Network Coding for Mobile Devices in Heterogeneous Networks
Author :
Cloud, Jason ; du Pin Calmon, Flavio ; Weifei Zeng ; Pau, Giovanni ; Zeger, Linda M. ; Medard, Muriel
Author_Institution :
Res. Lab. of Electron., Massachusetts Inst. of Technol., Cambridge, MA, USA
Abstract :
Existing mobile devices have the capability to use multiple network technologies simultaneously to help increase performance; but they rarely, if at all, effectively use these technologies in parallel. We first present empirical data to help understand the mobile environment when three heterogeneous networks are available to the mobile device (i.e., a WiFi network, WiMax network, and an Iridium satellite network). We then propose a reliable, multi-path protocol called Multi-Path TCP with Network Coding (MPTCP/NC) that utilizes each of these networks in parallel. An analytical model is developed and a mean-field approximation is derived that gives an estimate of the protocol´s achievable throughput. Finally, a comparison between MPTCP and MPTCP/NC is presented using both the empirical data and mean-field approximation. Our results show that network coding can provide users in mobile environments a higher quality of service by enabling the use of multiple network technologies and the capability to overcome packet losses due to lossy, wireless network connections.
Keywords :
approximation theory; mobile radio; multipath channels; network coding; transport protocols; Iridium satellite network; MPTCP/NC; WiFi network; WiMax network; heterogeneous networks; mean field approximation; mobile devices; mobile environment; multipath TCP with network coding; multipath protocol; wireless network connections; IEEE 802.11 Standards; Network coding; Packet loss; Protocols; Throughput; WiMAX;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2013 IEEE 78th
Conference_Location :
Las Vegas, NV
DOI :
10.1109/VTCFall.2013.6692295