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Software-Defined Network for End-to-end Networked Science at the Exascale

机译:Exascale的软件定义网络用于端到端网络科学

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Domain science applications and workflow processes are currently forced to view the network as an opaque infrastructure into which they inject data and hope that it emerges at the destination with an acceptable Quality of Experience. There is little ability for applications to interact with the network to exchange information, negotiate performance parameters, discover expected performance metrics, or receive status/troubleshooting information in real time. The work presented here is motivated by a vision for a new smart network and smart application ecosystem that will provide a more deterministic and interactive environment for domain science workflows. The Software-Defined Network for End-to-end Networked Science at Exascale (SENSE) system includes a model-based architecture, implementation, and deployment which enables automated end-to-end network service instantiation across administrative domains. An intent based interface allows applications to express their high-level service requirements, an intelligent orchestrator and resource control systems allow for custom tailoring of scalability and real-time responsiveness based on individual application and infrastructure operator requirements. This allows the science applications to manage the network as a first-class schedulable resource as is the current practice for instruments, compute, and storage systems. Deployment and experiments on production networks and testbeds have validated SENSE functions and performance. Emulation based testing verified the scalability needed to support research and education infrastructures. Key contributions of this work include an architecture definition, reference implementation, and deployment. This provides the basis for further innovation of smart network services to accelerate scientific discovery in the era of big data, cloud computing, machine learning and artificial intelligence.
机译:目前强迫域科学应用程序和工作流程流程将网络视为其注入数据的不透明基础架构,并希望它以可接受的体验质量在目的地中出现。应用程序很少能够与网络交互以交换信息,协商性能参数,发现预期性能指标,或实时接收状态/故障排除信息。这里呈现的工作是通过对新的智能网络和智能应用生态系统的愿景来激励,这将为域科学工作流提供更具确定性和交互式环境。 Exascale(Sense)系统的软件定义网络用于ExaScale(Sense)系统的端到端联网科学网络包括基于模型的体系结构,实现和部署,它可以跨行管理域实现自动端到端网络服务实例化。基于intent的界面允许应用程序来表达其高级服务要求,智能协调器和资源控制系统允许根据个人应用程序和基础设施操作员要求进行自定义可扩展性和实时响应性的自定义。这允许科学应用程序将网络作为一流的可调度资源管理,而是仪器,计算和存储系统的当前实践。生产网络和试验台的部署和实验具有验证的函数和性能。基于仿真的测试验证了支持研究和教育基础设施所需的可扩展性。此工作的主要贡献包括架构定义,参考实现和部署。这为智能网络服务的进一步创新提供了基础,以加速大数据,云计算,机器学习和人工智能的时代的科学发现。

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