SLBN: A Scalable Max-min Fair Algorithm for Rate-Based Explicit Congestion Control

A. Mozo, José Luis López-Presa, Antonio Fernández
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引用次数: 5

Abstract

The growth of the Internet has increased the need for scalable congestion control mechanisms in high speed networks. In this context, we propose a rate-based explicit congestion control mechanism with which the sources are provided with the rate at which they can transmit. These rates are computed with a distributed max-min fair algorithm, SLBN. The novelty of SLBN is that it combines two interesting features not simultaneously present in existing proposals: scalability and fast convergence to the max-min fair rates, even under high session churn. SLBN is scalable because routers only maintain a constant amount of state information (only three integer variables per link) and only incur a constant amount of computation per protocol packet, independently of the number of sessions that cross the router. Additionally, SLBN does not require processing any data packet, and it converges independently of sessions' RTT. Finally, by design, the protocol is conservative when assigning rates, even in the presence of high churn, which helps preventing link overshoots in transient periods. We claim that, with all these features, our mechanism is a good candidate to be used in real deployments.
基于速率的显式拥塞控制的可扩展Max-min公平算法
Internet的发展增加了对高速网络中可伸缩拥塞控制机制的需求。在这种情况下,我们提出了一种基于速率的显式拥塞控制机制,该机制为源提供了它们可以传输的速率。这些速率是用分布式最大最小公平算法(SLBN)计算的。SLBN的新颖之处在于,它结合了两个有趣的特性,这些特性在现有的提案中没有同时出现:可伸缩性和快速收敛到最大最小公平速率,即使在高会话流失率下也是如此。SLBN是可伸缩的,因为路由器只维护恒定数量的状态信息(每条链路只有三个整数变量),并且每个协议数据包只产生恒定数量的计算,而与穿越路由器的会话数量无关。此外,SLBN不需要处理任何数据包,并且它独立于会话的RTT进行收敛。最后,通过设计,协议在分配速率时是保守的,即使在存在高流失率的情况下,这有助于防止瞬态期间的链路超调。我们声称,由于具有所有这些特性,我们的机制非常适合在实际部署中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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