一种处理数据中心网络中TCP中继的概率方法

S. Kulkarni, P. Agrawal
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引用次数: 15

摘要

数据中心通常托管数以万计的服务器,这些服务器通过高速网络互连相互通信。虽然这些服务器帮助为数百万客户机提供服务,但它们的整体性能在很大程度上取决于中心通信结构的效率。然而,由于成本和兼容性的原因,许多数据中心考虑将以太网作为其基础通信结构。直到最近,数据中心内的以太网速度平均在100Mbps左右,但IEEE 802.3标准的发展导致了1gbps和10gbps以太网的发展。以太网速度的突然提升需要TCP/IP处理的比例缩放,以使网络密集型应用程序真正从增加的带宽中受益。虽然IP有望在这种情况下很好地扩展,但众所周知,TCP在支持非常高的数据速率和非常低的延迟方面存在问题。一个这样的问题,被称为“Incast”,导致在某些多对一TCP通信模式中链路容量的总体利用率不足。本文提出了一种实用的解决TCP连接问题的方法。我们提出的技术依赖于一种增强TCP标准拥塞恢复机制的概率方法。仿真结果表明,该技术可以有效地避免数据中心网络中TCP吞吐量崩溃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Probabilistic Approach to Address TCP Incast in Data Center Networks
Data centers typically host tens of thousands of servers that communicate with each other using high speed network interconnects. While these servers help in servicing millions of clients, their overall performance largely depends on the efficiency of the center's communication fabric. Cost and compatibility reasons however, persuade many data centers to consider Ethernet for their baseline communication fabric. Until recently, Ethernet speeds inside data centers averaged around 100Mbps but the evolution of IEEE 802.3 standards has led to the development of 1 Gbps and 10 Gbps Ethernet. This sudden jump in Ethernet speeds requires proportional scaling of TCP/IP processing for network intensive applications to really benefit from the increased bandwidth. While IP is expected to scale well in this context, TCP is known to have problems supporting very high data rates at very low latencies. One such problem, termed the `Incast', results in gross under-utilization of link capacity in certain many-to-one TCP communication patterns. This paper presents a practical solution to TCP's incast problem. Our proposed technique relies on a probabilistic approach that augments TCP's standard congestion recovery mechanism. Simulation results demonstrate that this technique is effective in avoiding TCP throughput collapse in data center networks.
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