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TCP-Peachtree: a multicast transport protocol for satellite IP networks

机译:TCP-Peachtree:用于卫星IP网络的多播传输协议

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摘要

In this paper, a reliable multicast transport protocol TCP-Peachtree is proposed for satellite Internet protocol (IP) networks. In addition to the acknowledgment implosion and scalability problems in terrestrial wirelined networks, satellite multicasting has additional problems, i.e., different multicast topology, different type of congestion control problems, and low bandwidth feedback link. In TCP-Peachtree, the modified B+ tree logical hierarchical structure is used to form dynamic multicast groups. Local error recovery and acknowledgment (ACK) aggregations are performed within each subgroup and also via logical subgroups. In order to avoid the overall performance degradation caused by some worst receivers, a local relay scheme is designed. Two new algorithms, jump start and quick recovery, which are based on the usage of a type of low-priority segments called NIL segments, are proposed for congestion control. NIL segments are used to probe the availability of network resources and also for error recovery. The delayed selective acknowledgment (SACK) scheme is adopted to address the bandwidth asymmetry problems and a hold state is developed to address persistent fades. The simulation results show that the congestion control algorithms of TCP-Peachtree outperform the TCP-NewReno when combined with our hierarchical groups and improve the throughput performance during rain fades. It is also shown that TCP-Peachtree achieves fairness and is very highly scalability.
机译:本文提出了一种可靠的组播传输协议TCP-Peachtree,用于卫星Internet协议(IP)网络。除了地面有线网络中的确认内爆和可伸缩性问题之外,卫星多播还存在其他问题,即不同的多播拓扑,不同类型的拥塞控制问题以及低带宽反馈链路。在TCP-Peachtree中,修改后的B +树逻辑分层结构用于形成动态多播组。在每个子组内以及通过逻辑子组执行本地错误恢复和确认(ACK)聚合。为了避免某些最差的接收器导致的整体性能下降,设计了本地中继方案。针对拥塞控制,提出了两种新算法,即快速启动和快速恢复,这两种算法基于一种称为NIL段的低优先级段的使用。 NIL网段用于探测网络资源的可用性以及错误恢复。采用了延迟选择确认(SACK)方案来解决带宽不对称问题,并开发了一个保持状态来解决持久衰落。仿真结果表明,TCP-Peachtree的拥塞控制算法在与我们的分层组结合使用时优于TCP-NewReno,并改善了雨衰期间的吞吐量性能。还表明,TCP-Peachtree具有公平性,并且具有很高的可伸缩性。

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