Title :
ARCHON: An ANDSF-assisted energy-efficient vertical handover decision algorithm for the heterogeneous IEEE 802.11/LTE-advanced network
Author :
Xenakis, D. ; Passas, Nikos ; Merakos, Lazaros ; Verikoukis, Christos
Author_Institution :
Dept. of Inf. & Telecommun., Univ. of Athens, Athens, Greece
Abstract :
To address the challenging issues of energy-efficiency and seamless connectivity in heterogeneous networks, 3GPP and IEEE have recently incorporated several architectural and functional enhancements to the baseline operation of their standards for cellular and wireless local area network access, respectively. Based on the 3GPP Access Network Discovery and Selection Function (ANDSF) and the advanced measurement capabilities provided by the IEEE 802.11-2012 and the 3GPP Long Term Evolution - Advanced (LTE-A) Standards, we propose an ANDSF-assisted energy-efficient vertical handover decision algorithm for the heterogeneous IEEE 802.11-2012 / LTE-A network. The proposed algorithm enables a multi-mode mobile terminal to select and associate with the network point of attachment that minimizes its average overall power consumption and guarantees a minimum supported quality of service for its ongoing connections. System-level simulation is used to evaluate the performance of the proposed algorithm and compare it to that of other competing solutions.
Keywords :
3G mobile communication; Long Term Evolution; cellular radio; energy conservation; mobility management (mobile radio); power consumption; quality of service; radio access networks; telecommunication power management; wireless LAN; 3GPP Access Network; 3GPP Long Term Evolution; ANDSF-assisted energy-efficient vertical handover decision algorithm; ARCHON; IEEE 802.11-2012; LTE-A; cellular network; energy-efficiency; heterogeneous IEEE 802.11/LTE-Advanced network; multimode mobile terminal; power consumption; quality of service; seamless connectivity; system-level simulation; vertical handover decision algorithm; wireless local area network access; Energy efficiency; Handover; Interference; Power demand; Standards; Wireless LAN; ARCHON; Access Network Discovery and Selection Function (ANDSF); IEEE 802.11-2012; LTE-Advanced; WLAN; energy efficiency; vertical handover;
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/ICC.2014.6883808