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Hybrid fluid modeling approach for performance analysis of P2P live video streaming systems - Springer

机译:用于P2P实时视频流系统性能分析的混合流体建模方法-Springer

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In this paper a hybrid modeling approach with different modeling formalisms and solution methods is employed in order to analyze the performance of peer to peer live video streaming systems. We conjointly use queuing networks and Fluid Stochastic Petri Nets, developing several performance models to analyze the behavior of rather complex systems. The models account for: network topology, peer churn, scalability, peer average group size, peer upload bandwidth heterogeneity and video buffering, while introducing several features unconsidered in previous performance models, such as: admission control for lower contributing peers, control traffic overhead and internet traffic packet loss. Our analytical and simulation results disclose the optimum number of peers in a neighborhood, the minimum required server upload bandwidth, the optimal buffer size and the influence of control traffic overhead. The analysis reveals the existence of a performance switch-point (i.e. threshold) up to which system scaling is beneficial, whereas performance steeply decreases thereafter. Several degrees of degraded service are introduced to explore performance with arbitrary percentage of lost video frames and provide support for protocols that use scalable video coding techniques. We also find that implementation of admission control does not improve performance and may discourage new peers if waiting times for joining the system increase.
机译:为了分析点对点实时视频流系统的性能,本文采用了一种具有不同建模形式和解决方法的混合建模方法。我们结合使用排队网络和流体随机Petri网,开发了几种性能模型来分析相当复杂的系统的行为。这些模型考虑了以下因素:网络拓扑,对等流失,可伸缩性,对等体平均组大小,对等体上载带宽异构性和视频缓冲,同时引入了以前的性能模型中未考虑的几个功能,例如:较低贡献对等体的准入控制,控制流量开销和互联网流量数据包丢失。我们的分析和仿真结果揭示了邻域中的对等体的最佳数量,所需的最小服务器上载带宽,最佳缓冲区大小以及控制流量开销的影响。该分析揭示了性能转换点(即阈值)的存在,系统缩放对于该转换点是有利的,而此后性能急剧下降。引入了几种降级服务,以探索任意百分比丢失视频帧的性能,并为使用可伸缩视频编码技术的协议提供支持。我们还发现,准入控制的实施不会提高性能,并且如果等待加入系统的时间增加,可能会阻止新的同行。

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