Linear Programming Models For Multi-Channel P2P Streaming Systems

INFOCOM(2010)

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摘要
Most of the commercial P2P video streaming deployments support hundreds of channels and are referred to as multichannel systems. Measurement studies show that bandwidth resources of different channels are highly unbalanced and thus recent research studies have proposed various protocols to improve the streaming qualities for all channels by enabling cross-channel cooperation among multiple channels. However, there is no general framework for comparing existing and potential designs for multi-channel P2P systems. The goal of this paper is to establish tractable models for answering the fundamental question in multi-channel system designs: Under what circumstances, should a particular design be used to achieve the desired streaming quality with the lowest implementation complexity? To achieve this goal, we first classify existing and potential designs into three categories, namely Naive Bandwidth allocation Approach (NBA), Passive Channel-aware bandwidth allocation Approach (PCA) and Active Channel-aware bandwidth allocation Approach (ACA). Then, we define the bandwidth satisfaction ratio as a performance metric to develop linear programming models for the three designs. The proposed models are independent of implementations and can be efficiently solved due to the linear property, which provides a way of numerically exploring the design space of multi-channel systems and developing closed-form solutions for special systems.
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关键词
active channel-aware bandwidth allocation,bandwidth satisfaction ratio,linear programming model,p2p video,multi-channel system design,naive bandwidth allocation,passive channel-aware bandwidth allocation,streaming qualities,potential design,active channel-aware bandwidth allocation approach,bandwidth allocation,multichannel p2p streaming systems,cross-channel cooperation,bandwidth resources,linear programming,media streaming,linear property,p2p system,implementation complexity,p2p video streaming deployments,tractable models,multi-channel p2p,peer-to-peer computing,passive channel-aware bandwidth allocation approach,linear programming models,naive bandwidth allocation approach,bandwidth resource,multi-channel system,principal component analysis,system design,protocols,resource management,linear program,closed form solution,channel allocation,computer science,p2p,space exploration,bandwidth
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