DocumentCode
2546703
Title
Two hybrid multicast algorithms for optimizing resources in a distributed VoD system
Author
González, Sonia ; Navarro, Angeles ; López, Juan ; Zapata, Emilio
Author_Institution
Comput. Archit. Dept., Malaga Univ., Spain
fYear
2004
fDate
5-7 Jan. 2004
Firstpage
145
Lastpage
152
Abstract
Among many different multicast approaches, batching and patching are two commonly used policies. In this paper, we propose two hybrid multicast algorithms inspired by the maximum factored queue length (MFQL) batching scheme - used to decide which video queue will be serviced with a multicast session - and by a threshold-based patching scheme - applied to control the partial streams transmission before a threshold is reached during an ongoing multicast session. The novelty is that our algorithms have been designed to efficiently handle the requests in a distributed VoD system while optimizing the usage of the sever/network resources. Precisely, one key issue in the optimization of these resources is the computation of the threshold. We show in this paper how that threshold is derived to deliver a service. In addition, we conduct some simulation experiments that provides us some insightful information about the impact that our threshold based multicast algorithms have in the average waiting time in a distributed VoD system.
Keywords
client-server systems; multicast protocols; optimisation; resource allocation; video on demand; MFQL batching scheme; average waiting time; distributed VoD system; maximum factored queue length; multicast algorithms; network resources; partial streams transmission; resource optimization; sever resources; threshold-based patching scheme; video-on-demand; Algorithm design and analysis; Asynchronous transfer mode; Bandwidth; Computer architecture; Design optimization; Multicast algorithms; Network servers; Streaming media; Switches; Video on demand;
fLanguage
English
Publisher
ieee
Conference_Titel
Multimedia Modelling Conference, 2004. Proceedings. 10th International
Print_ISBN
0-7695-2084-7
Type
conf
DOI
10.1109/MULMM.2004.1264979
Filename
1264979
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