星-地综合网络环境下TCP的实验性能评价

A. A. Bisu, Andrew Gallant, Hongjian Sun, Katharine Brigham, Alan Purvis
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引用次数: 2

摘要

在本文中,我们使用真实的异构网络环境对互联网协议(IP)上的传输控制协议(TCP)性能进行了实验测量和评估,该环境包括至少一段卫星和陆地移动链路,这些链路一起构成了一个综合卫星-地面网络(ISTN)测试平台,用于我们的研究和性能分析。TCP算法最初是为短延迟和低链路错误的网络环境而开发的,目前已经成为在Internet上可靠传输IP流量的事实上的标准协议,而Internet实际上是一个异构的网络环境。使用我们的测试平台系统测量的真实延迟数据,我们对标准TCP方案的性能进行了数值分析,并将其与新开发的TCP Hybla算法进行了比较,该算法声称可以解决由于长往返时间(RTT)和高无线链路误差信道(如地球同步卫星链路)而导致的性能下降。将两种TCP算法的总体性能与实际测试系统的可实现吞吐量和可用带宽进行了比较。TCP Hybla在以地球同步卫星链路为测试平台的真实混合ISTN环境中获得的RTT实际值发生变化时,也表现得更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Performance Evaluation of TCP Over an Integrated Satellite-Terrestrial Network Environment
In this paper, we present the experimental measurement and evaluation of Transmission Control Protocol (TCP) performance over Internet Protocol (IP) using a real, heterogeneous network environment, incorporating at least one leg of satellite and land mobile link that, together, make an Integrated Satellite-Terrestrial Network (ISTN) testbed for our investigation and performance analysis. Originally, the TCP algorithm was developed for short latency and low link error network environments and has become a de-facto standard protocol for the reliable delivery of IP traffic over the Internet, which, in reality, is a heterogeneous network environment nowadays. Using the real latency figures measured with our testbed systems, we numerically analyse the performance of a standard TCP scheme and compare it with the newly developed TCP Hybla algorithm that claims to address performance degradation due to long round-trip-time (RTT) and high wireless link error channels such as Geostationary Satellite Links. The overall performance was compared with the achievable throughput of each of the two TCP algorithms and available bandwidth of the real testbed system. TCP Hybla performed better even with changing real values of RTT obtained from a real hybrid ISTN environment with a Geostationary Satellite link as the testbed.
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