Predicting Web Site Access: An Application of Time Series
WSE '01 Proceedings of the 3rd International Workshop on Web Site Evolution (WSE'01)
Scattercast: an architecture for internet broadcast distribution as an infrastructure service
Scattercast: an architecture for internet broadcast distribution as an infrastructure service
Bullet: high bandwidth data dissemination using an overlay mesh
SOSP '03 Proceedings of the nineteenth ACM symposium on Operating systems principles
Performance Analysis and Improvement of Overlay Construction for Peer-to-Peer Live Media Streaming
MASCOTS '05 Proceedings of the 13th IEEE International Symposium on Modeling, Analysis, and Simulation of Computer and Telecommunication Systems
ALMI: an application level multicast infrastructure
USITS'01 Proceedings of the 3rd conference on USENIX Symposium on Internet Technologies and Systems - Volume 3
mTreebone: A Hybrid Tree/Mesh Overlay for Application-Layer Live Video Multicast
ICDCS '07 Proceedings of the 27th International Conference on Distributed Computing Systems
Priority based selection to improve contents consistency for mobile overlay network
WCNC'09 Proceedings of the 2009 IEEE conference on Wireless Communications & Networking Conference
Mesh-based data delivery over multiple tree-shaped routes in P2P overlay network
ICOIN'09 Proceedings of the 23rd international conference on Information Networking
Efficient construction in ALM with assignment of layered degree and bi-cast
CCNC'09 Proceedings of the 6th IEEE Conference on Consumer Communications and Networking Conference
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The hybrid Application Layer Multicast (ALM) has been shown its efficiency by leveraging the conventionally main structures of application layer multicast, tree-based and mesh-based. However, how to select the proper node to construct the overlay and how to establish the connection between any two nodes are still unsolved. Therefore, this paper is to design a novel construction algorithm for the hybrid ALM to resolve the above two issues. Firstly, by carrying out the analysis of nodes' characteristics, all nodes are divided into groups and a node priority is proposed to select the super node within each group. Secondly, by using the selected super node, all nodes are hierarchically controlled and different kinds of connections are carried out in the ALM, where the connection between super node and other nodes is set to be a tree to enhance the efficient utilization of network resource while the connection between other normal nodes is decided to be a mesh to reduce the overhead. Simulation results show that the proposal outperforms other conventional methods.