数据中心网络中TCP拥塞控制算法的性能评价

T. A. Nguyen, Siddharth Gangadhar, J. Sterbenz
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引用次数: 12

摘要

TCP拥塞控制以其在稳定互联网和防止拥塞崩溃方面的关键作用而闻名。然而,随着网络技术的飞速发展,数据中心网络(DCNs)等具有挑战性的网络环境出现,传统的TCP算法存在一些缺陷。TCP在dcn中部署时的缺点促使了多种新变体的开发,包括DCTCP、ICTCP、IA-TCP和D2TCP,但是所有这些算法都以牺牲全球Internet中的许多缺点为代价展示了它们的优点。我们相信,新的创新需要建立在坚实的基础之上,并对现有的、完善的算法有透彻的了解,我们一直致力于对DCNs和其他现代网络中的各种传统TCP算法进行全面分析。本文介绍了我们完成比较研究的第一个里程碑,其中我们展示了通过使用胖树架构模拟多个TCP变体获得的结果:NewReno, Vegas, HighSpeed, Scalable, Westwood+, BIC, CUBIC和YeAH。根据队列长度、丢包数、平均包延迟和总带宽占信道带宽的百分比对每个协议进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of TCP Congestion Control Algorithms in Data Center Networks
TCP congestion control has been known for its crucial role in stabilizing the Internet and preventing congestion collapses. However, with the rapid advancement in networking technologies, resulting in the emergence of challenging network environments such as data center networks (DCNs), the traditional TCP algorithm leads to several impairments. The shortcomings of TCP when deployed in DCNs have motivated the development of multiple new variants, including DCTCP, ICTCP, IA-TCP, and D2TCP, but all of these algorithms exhibit their advantages at the cost of a number of drawbacks in the Global Internet. Motivated by the belief that new innovations need to be established on top of a solid foundation with a thorough understanding of the existing, well-established algorithms, we have been working towards a comprehensive analysis of various conventional TCP algorithms in DCNs and other modern networks. This paper presents our first milestone towards the completion of our comparative study in which we present the results obtained by simulating multiple TCP variants: NewReno, Vegas, HighSpeed, Scalable, Westwood+, BIC, CUBIC, and YeAH using a fat tree architecture. Each protocol is evaluated in terms of queue length, number of dropped packets, average packet delay, and aggregate bandwidth as a percentage of the channel bandwidth.
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