Investigating TCP performance issues in satellite networks

Sriram Ganapathi Subramanian, S. Sivakumar, W. Phillips, W. Robertson
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引用次数: 12

Abstract

TCP is the widely used transport protocol across the Internet but it was originally designed for wired networks. In satellite networks, TCP encounters serious problems due to the physical properties of the wireless medium. The high delays in GEO networks and high variability of delay in LEO systems are the most significant factors affecting TCP performance. This paper identifies and illustrates TCP performance issues in satellite links by making a detailed comparison between these two common satellite altitudes. In low altitude satellite constellations, the propagation and switching delays are highly variable because of routing changes and handovers. Previous work on variable delay has focused explicitly on the retransmit timer. This paper makes a flow based analysis of abrupt delay changes to better understand TCP performance in LEO systems. Simulations are performed with the NS 2 satellite extension using the iridium constellation. It is observed that TCP performs better in LEO than in GEO systems because of its lower latency. It is also shown that large receiver buffers and intermediate buffers can alleviate the effect of abrupt delay changes in satellite networks.
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调查卫星网络中的TCP性能问题
TCP是互联网上广泛使用的传输协议,但它最初是为有线网络设计的。在卫星网络中,由于无线介质的物理特性,TCP遇到了严重的问题。GEO网络中的高时延和LEO系统中时延的高可变性是影响TCP性能的最重要因素。本文通过对这两种常见卫星高度的详细比较,确定并说明了卫星链路中的TCP性能问题。在低空卫星星座中,由于路由变化和切换,传输和交换延迟变化很大。以前关于可变延迟的工作主要集中在重传计时器上。为了更好地理解LEO系统中的TCP性能,本文对突发延迟变化进行了基于流的分析。利用铱星星座对ns2卫星扩展进行了仿真。观察到TCP在LEO系统中的性能优于GEO系统,因为它的延迟更低。研究还表明,大的接收机缓冲区和中间缓冲区可以缓解卫星网络中时延突变的影响。
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