Semantically Reliable Multicast Based on the (m-k)-Firm Technique

Wilian Queiroz, L. Lung, Luciana Rech, L. Lima
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Abstract

There was a lot of interest in multicast communications within this decade as it is an essential part of many network applications, e.g. video-on-demand, etc. In this paper, we model flow rate allocation for application overlay as a utility based optimization problem constrained by capacity limitations of physical links and overlay constraints. The optimization flow control presented here addresses not only concave utility functions which are suitable for applications with elastic traffics, but also especial forms of non-concave utilities that are used to model applications with inelastic traffics, which might demand for hard delay and rate requirements. We then propose an iterative algorithm as the solution to the optimization flow control problem and investigate especial forms of non-concave utilities that are supported by this model. Simulation results show that the iterative algorithm can be used to deal with sigmoidal-like utilities which are useful for modeling real-time applications such as live streaming.
基于(m-k) firm技术的语义可靠组播
在这十年中,由于多播通信是许多网络应用的重要组成部分,例如视频点播等,因此对多播通信产生了很大的兴趣。在本文中,我们将应用覆盖的流量分配建模为一个基于效用的优化问题,该优化问题受物理链路容量限制和覆盖约束的约束。本文提出的优化流控制不仅解决了适用于弹性流量应用的凹效用函数,而且还解决了用于模拟可能需要硬延迟和速率要求的非弹性流量应用的特殊形式的非凹效用函数。然后,我们提出了一种迭代算法作为优化流控制问题的解决方案,并研究了该模型支持的特殊形式的非凹效用。仿真结果表明,该迭代算法可用于处理类sigmoidal实用程序,这对于实时应用(如直播)的建模很有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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