Title :
Efficient multimedia content delivery over cooperative 3G and broadcasting networks
Author :
Huang, Luan ; Chew, Kar Ann ; Tafazolli, Rahim
Author_Institution :
Mobile Commun. Res. Group, Surrey Univ., Guildford
Abstract :
As wireless communications are enhanced towards "beyond 3G" (B3G), multicast transmission is attracting more and more attention because it offers a more cost-effective provision of the multimedia content than the traditional unicast transmission. In this context, a problem emerges regarding the multimedia content delivery in a B3G environment, as users are reachable through several overlapping wireless access networks, which potentially are multicast-enabled. A mechanism is proposed in this paper to address this problem. The objective is to determine the best access network and the QoS level for each user in order to maximize the overall utilities in the system. This is achieved by three functions, namely, service scheduling (SS), network selection (NS) and QoS adaptation (QoSA), SS utilizes multicast transmission capability to save radio resource by scheduling a copy of the multimedia content to a group of users. NS and QoSA enable intelligent network resource allocation in overlapping multicast-enabled networks while respecting users\´ preferences and QoS expectation. Simulation results confirm the significant benefit of the proposed mechanism
Keywords :
3G mobile communication; broadcasting; intelligent networks; mobile radio; multicast communication; multimedia communication; quality of service; radio access networks; resource allocation; scheduling; B3G; QoS; beyond 3G; broadcasting network; cooperative third generation network; intelligent network resource allocation; multicast transmission; multimedia content delivery; network selection; quality-of-service adaptation; radio resource; service scheduling; wireless access networks; 3G mobile communication; Bandwidth; Digital multimedia broadcasting; Digital video broadcasting; Multimedia communication; Multimedia systems; Quality of service; Radio broadcasting; Unicast; Wireless networks; QoS; content delivery; cooperative; multicast; multimedia; utility;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 2005. PIMRC 2005. IEEE 16th International Symposium on
Conference_Location :
Berlin
Print_ISBN :
9.7838007291e+012
DOI :
10.1109/PIMRC.2005.1651851