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Modeling and analysis of TCP-like multicast congestion control in hybrid terrestrial/satellite IP networks

机译:地面/卫星混合IP网络中类似TCP的多播拥塞控制的建模与分析

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摘要

Given their broadcast nature, satellite communications are one natural engineering choice for multicast service deployment. In this paper, the throughput performance of transmission control protocol (TCP)-like multicast congestion control is analyzed in hybrid terrestrial/satellite networks. With this objective, an analytical framework based on Markov chains is introduced. The major advantage of the proposed analytical model is its scalability in that the number of states of the Markov chain modeling the system is independent of the number of receivers in the multicast session. This is a very important feature as simulation is unfeasible for large numbers of receivers. The framework is used to evaluate the impact of the long propagation delays, high bit-error rates, and channel asymmetry characterizing hybrid terrestrial/satellite communications. The performance results show that in certain cases, it is more convenient to divide the receivers in an appropriate number of groups and establish a different multicast session toward each of the above groups. Also, the convenience of an acknowledgment (ACK) flow reconstructor is shown.
机译:鉴于其广播性质,卫星通信是多播服务部署的自然工程选择。本文分析了地面/卫星混合网络中类似TCP的组播拥塞控制的吞吐性能。为了这个目标,引入了基于马尔可夫链的分析框架。所提出的分析模型的主要优点是它的可伸缩性,因为对系统进行建模的马尔可夫链的状态数量与多播会话中的接收者数量无关。这是非常重要的功能,因为对于大量接收器而言,仿真是不可行的。该框架用于评估长传播延迟,高误码率以及表征地面/卫星混合通信的信道不对称性的影响。性能结果表明,在某些情况下,将接收者划分为适当数量的组并针对上述每个组建立不同的多播会话更为方便。而且,示出了确认(ACK)流重构器的便利性。

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