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RAPID: an end-system aware protocol for intelligent data transfer over lambda grids

机译:RAPID:一种在lambda网格上进行智能数据传输的终端系统感知协议

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Next-generation e-science applications will require the ability to transfer information at high data rates between distributed computing centers and data repositories. To support such applications, lambda grid networks have been built to provide large, on-demand bandwidth between end-points that are interconnected via optical circuit-switched lambdas. It is extremely important to develop an efficient transport protocol over such high-capacity, dedicated circuits. Because lambdas provide dedicated bandwidth between endpoints, they obviate the need for network congestion control. Consequently, past research has demonstrated that rate-based transport protocols, such as RBUDP, are more effective than TCP in transferring data over lambdas. However, while lambdas eliminate congestion in the network, they ultimately push the congestion to the endpoints - congestion that current rate-based transport protocols are ill-suited to handle. In this paper we introduce a "rate-adaptive protocol for intelligent delivery (RAPID)" of data that is lightweight and end-system performance-aware, so as to maximize end-to-end throughput while minimizing packet loss. Based on self monitoring of the dynamic task-priority at the receiving end-system, our protocol enables the receiver to proactively deliver feedback to the sender, so that the sender may adapt its sending rate to avoid congestion at the receiving end-system. This avoids large bursts of packet losses typically observed in current rate-based transport protocols. Over a 10-Gigabit link emulation of an optical circuit, RAPID reduces file-transfer time, and hence improves end-to-end throughput by as much as 25%.
机译:下一代电子科学应用程序将需要具有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。为了支持此类应用,已构建了lambda网格网络,以在通过光电路交换lambda互连的端点之间提供较大的按需带宽。在如此大容量的专用电路上开发有效的传输协议非常重要。由于Lambda在端点之间提供专用带宽,因此无需进行网络拥塞控制。因此,过去的研究表明,基于速率的传输协议(例如RBUDP)在通过lambda传输数据方面比TCP更有效。但是,尽管lambda消除了网络中的拥塞,但它们最终将拥塞推到了端点,即当前基于速率的传输协议不适合处理的拥塞。在本文中,我们介绍了一种轻量级的,具有端系统性能感知能力的数据“智能传输速率自适应协议(RAPID)”,以便在最大程度降低端到端吞吐量的同时最大程度地减少数据包丢失。基于接收端系统对动态任务优先级的自我监控,我们的协议使接收器能够主动将反馈传递给发送方,以便发送方可以调整其发送速率以避免接收端系统的拥塞。这避免了在基于当前速率的传输协议中通常会观察到的大量丢包现象。通过光电路的10 Gb链路仿真,RAPID减少了文件传输时间,因此将端到端吞吐量提高了多达25%。

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