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Delay-Tolerant Bulk Data Transfers on the Internet

机译:Internet上的延迟容忍批量数据传输

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Many emerging scientific and industrial applications require transferring multiple terabytes of data on a daily basis. Examples include pushing scientific data from particle accelerators/colliders to laboratories around the world, synchronizing datacenters across continents, and replicating collections of high-definition videos from events taking place at different time-zones. A key property of all above applications is their ability to tolerate delivery delays ranging from a few hours to a few days. Such delay-tolerant bulk (DTB) data are currently being serviced mostly by the postal system using hard drives and DVDs, or by expensive dedicated networks. In this paper, we propose transmitting such data through commercial ISPs by taking advantage of already-paid-for off-peak bandwidth resulting from diurnal traffic patterns and percentile pricing. We show that between sender–receiver pairs with small time-zone difference, simple source scheduling policies are able to take advantage of most of the existing off-peak capacity. When the time-zone difference increases, taking advantage of the full capacity requires performing store-and-forward through intermediate storage nodes. We present an extensive evaluation of the two options based on traffic data from 200+ links of a large transit provider with points of presence (PoPs) at three continents. Our results indicate that there exists huge potential for performing multiterabyte transfers on a daily basis at little or no additional cost.
机译:许多新兴的科学和工业应用程序每天需要传输多个TB的数据。例如,将科学数据从粒子加速器/对撞机推向世界各地的实验室,同步各大洲的数据中心,并复制在不同时区发生的事件的高清视频集合。上述所有应用程序的一个关键特性是它们能够忍受从几小时到几天不等的交付延迟。当前,此类延迟容忍的批量(DTB)数据主要由使用硬盘驱动器和DVD的邮政系统或昂贵的专用网络提供服务。在本文中,我们建议利用日均流量模式和百分位数定价所产生的已付费非高峰带宽,通过商业ISP传输此类数据。我们显示,在时区差异较小的发送方-接收方对之间,简单的源调度策略可以利用大多数现有的非高峰容量。当时区差异增加时,要利用全部容量,需要执行中间存储节点的存储转发。我们基于来自大型公交运营商的200多个链接以及三大洲的接入点(PoP)的流量数据,对两种选择进行了广泛的评估。我们的结果表明,每天以很少或没有额外成本执行多TB传输的潜力很大。

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