End-host based mechanisms for implementing flow scheduling in GridNetworks

Sebastien Soudan, R. Guillier, P. Primet
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引用次数: 7

Abstract

In Grids, data transfers and network resources need to be managed in a more deterministic way than in the Internet. New approaches like flow scheduling are proposed and studied as alternatives to traditional QoS and reservation proposals. To enable such flow scheduling approaches, runtime mechanisms controlling flow sending time and rate have to be implemented in the data plane. This paper quantifies and compares such end-host based mechanisms combined with transport protocols to instantiate different scheduling strategies in a range of latency conditions. We show that, a single-rate scheduling strategy implemented by an AIMD-based protocol and a packet pacing mechanism offers predictable performance and is insensitive to latency. This paper also highlights the limits of other strategies and rate limitation mechanisms like token bucket which generates unpredictability and other drawbacks.
基于终端主机的网格网络流量调度实现机制
在网格中,数据传输和网络资源需要以比Internet更确定的方式进行管理。流调度等新方法被提出和研究,作为传统QoS和保留方案的替代方案。为了启用这样的流调度方法,必须在数据平面中实现控制流发送时间和速率的运行时机制。本文量化并比较了这些基于终端主机的机制与传输协议的结合,以实例化在一系列延迟条件下的不同调度策略。我们表明,由基于aimd的协议和数据包步调机制实现的单速率调度策略提供了可预测的性能,并且对延迟不敏感。本文还强调了其他策略和速率限制机制的局限性,如令牌桶,它会产生不可预测性和其他缺点。
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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