Title :
GAMLL: Gateway Assisted Multicast Algorithm Towards Low Latency for Wireless Mesh Networks
Author :
Yuan Yuan ; Chaoyi Bian ; Tong Zhao ; Wei Yan
Author_Institution :
Comput. Networks & Distrib. Syst. Lab., Peking Univ., Beijing, China
Abstract :
As streaming media services in wireless networks become popular, it is necessary to study new multicast algorithms with low latency to meet real-time requirements. Wireless mesh networks (WMNs) offer potential solutions to problems of streaming media services. This paper proposes a new two-tier architecture assisted by gateways for WMNs. Based on this architecture, multicast tree establishment algorithm with bandwidth prediction model is introduced, in which links with better bandwidth conditions will be chosen as tree branches to shorten latency to the largest extent. Furthermore, routing algorithm called Gateway Assisted Multicast Algorithm towards Low Latency for Wireless Mesh Networks (GAMLL) is designed to support real-time streaming media services, in which routing maintenance and recovery is also discussed. Simulation results show GAMLL with prediction model works better in VoIP and video transmission services than On-Demand Multicast Routing Protocol (ODMRP), which has relative low latency in wireless networks. Compared to ODMRP, GAMLL reduces average latency and maximum latency by up to 28% and 52% respectively.
Keywords :
Internet telephony; bandwidth allocation; internetworking; media streaming; multicast protocols; routing protocols; telecommunication services; trees (mathematics); video communication; wireless mesh networks; GAMLL; ODMRP; VoIP; WMN; bandwidth condition; bandwidth prediction model; gateway assisted multicast algorithm towards low latency; multicast tree establishment algorithm; on-demand multicast routing protocol; routing algorithm; routing maintenance; routing recovery; streaming media service; tree branch; video transmission services; wireless mesh network; Bandwidth; Logic gates; Prediction algorithms; Predictive models; Routing; Streaming media; Wireless mesh networks;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2013 IEEE 77th
Conference_Location :
Dresden
DOI :
10.1109/VTCSpring.2013.6692576