Many scientific high-throughput applications can benefit from the elastic nature of Cloud resources, especially when there is a need to reduce time to completion. Cost considerations are usually a major issue in such endeavors, with networking often a major component; for data-intensive applications, egress networking costs can exceed the compute costs. Dedicated network links provide a way to lower the networking costs, but they do add complexity. In this paper we provide a description of a 100 fp32 PFLOPS Cloud burst in support of IceCube production compute, that used Internet2 Cloud Connect service to provision several logically-dedicated network links from the three major Cloud providers, namely Amazon Web Services, Microsoft Azure and Google Cloud Platform, that in aggregate enabled approximately 100 Gbps egress capability to on-prem storage. It provides technical details about the provisioning process, the benefits and limitations of such a setup and an analysis of the costs incurred.
翻译:许多高科技载量应用可受益于云层资源的弹性性,特别是在需要缩短完成时间的情况下。成本考虑通常是此类努力中的一个主要问题,因为联网往往是一个主要组成部分;对于数据密集型应用而言,递增网络成本可能超过计算成本。专用网络连接为降低联网成本提供了一种方法,但确实增加了复杂性。在本文中,我们描述了支持冰球生产计算工作的100英尺p32的紫外线云爆发情况,它利用因特网2云连接服务提供三大云源提供者(即亚马逊网络服务公司、微软Azure公司和谷歌云平台)的几条逻辑专用网络连接,这三家云端供应商总体上使大约100千兆字节的云层储存能力得以实现。它提供了提供流程的技术细节、这种设置的好处和局限性以及成本分析。