lambdagrid中网络调度的反馈机制

P. Datta, Sushant Sharma, Wu-chun Feng
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引用次数: 3

摘要

下一代电子科学应用将需要在分布式计算中心和数据存储库之间以高数据速率传输信息的能力。Lambda-Grid提供专用的、光学的、电路交换的、点对点的连接,可以专门为某个应用保留。尽管这种专用高速连接消除了网络中的拥塞,但由于处理速度跟不上网络速度,它们实际上将网络拥塞推到了终端系统。因此,在这种高速专用电路上开发一种有效的传输协议是至关重要的。在这项工作中,我们提出了基于性能监控的轻量级终端系统协议的想法,以显着提高LambdaGrid上数据传输的性能。我们特别关注接收端系统的操作系统任务调度动态监控,以便尽早发现潜在的端系统拥塞,并将适当的反馈发送回发送端系统,以避免数据包丢失。这种规避行为的一个例子是暂停传输一段时间,在此期间,接收端的操作系统必须处理其他计算过程。考虑到这一点,我们建议扩展可靠爆炸UDP (RBUDP)协议,通过使用通过性能监控激活的简单反馈机制来采取这种规避行为。这个名为RBUDP的新协议极大地提高了lambdagrid上数据传输的性能。我们证明了我们提出的协议的有效性,并通过网络仿真说明了所获得的性能收益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A feedback mechanism for network scheduling in LambdaGrids
Next-generation e-Science applications will require the ability to transfer information at high data rates between distributed computing centers and data repositories. A Lambda-Grid offers dedicated, optical, circuit-switched, point-to-point connections, which may be reserved exclusively for an application. Though such dedicated high-speed connections eliminate congestion in the network, they effectively push the network congestion out to the end systems, as processing speeds have not kept up with networking speeds. Therefore, developing an efficient transport protocol over such highspeed dedicated circuits is of critical importance. In this work, we propose the idea of a lightweight end-system protocol, based on performance monitoring, to significantly improve the performance of data transport over a LambdaGrid. In particular, we focus on dynamically monitoring the OS task scheduling at the receiving end-system so that potential end-system congestion may be detected early and appropriate feedback can be transmitted back to the sending end-system to avoid packet losses. One example of such an evasive action is to suspend transmission for certain duration of time during which the OS on the receiving end-system must handle other computational processes. With this in mind, we propose to extend the Reliable-Blast UDP (RBUDP) protocol to take such evasive action by using a simple feedback mechanism that is activated via performance monitoring. The new protocol, named RBUDP dramatically improves the performance of data transfer over LambdaGrids. We demonstrate the effectiveness of our proposed protocol and illustrate the performance gains achieved via network emulation.
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