面向实时网络动态预留的SDN(特邀演讲)

L. Almeida
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引用次数: 0

摘要

最近不断发展的框架,如物联网、工业物联网、云/雾/边缘计算、CPS等,使它们所依赖的网络平台成为人们关注的焦点,成为越来越依赖软件的领域的一流公民。因此,网络在支持所需的系统范围属性方面发挥着越来越重要的作用。特别是,我们一直致力于提供开放性和适应性,并保证时效性。这种组合似乎是以资源高效的方式支持固有动态应用程序的基础,它不仅涵盖了系统的系统、具有可变数量的用户、组件或资源的系统,而且还涵盖了在其生命周期中频繁进行实时维护甚至重新配置的系统。例子包括自动驾驶汽车、协作机器人、远程交互、雾/边缘计算、柔性制造等。我们假设,只有在适当的协议支持的适当的通信抽象的情况下,才能将开放性和自适应性与保证的时效性结合起来。为此,我们提出了基于通道预留的通信,作为提供可扩展和开放延迟约束通信的一种手段,从而实现更有效的系统设计。在这次演讲中,我们将展示我们最近在使用软件定义网络(SDN)为流量灵活性提供标准接口方面的工作。我们提出对SDN OpenFlow协议进行扩展,提供足够的服务,以利用灵活的实时通信协议,从而为灵活的实时预约提供标准接口。我们称之为实时开放流框架(RTOF)。最后,我们描述并评估了一个基于HaRTES以太网交换机的原型实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SDN for Dynamic Reservations on Real-Time Networks (Invited Talk)
Recent growing frameworks such as the IoT, IIot, Cloud/Fog/Edge computing, CPS, etc, bring the networking platforms on which they rely to the spotlight, as first class citizens of an increasingly software-dependent landscape. As a result, networks play an increasingly central role in supporting the needed system-wide properties. In particular, we have been working to provide openness and adaptivity together with timeliness guarantees. This combination seems fundamental to support inherently dynamic applications in a resource efficient way, covering not only the cases of systems of systems, systems with variable number of users, components or resources but also systems that undergo frequent live maintenance and even reconfiguration during their lifetime. Examples range from autonomous vehicles to collaborative robotics, remote interactions, fog/edge computing, flexible manufacturing, etc. We postulate that combining openess and adaptivity with guaranteed timeliness can only be achieved with an adequate communication abstraction supported on adequate protocols. To this end, we have been proposing channel reservation-based communication as a means to provide scalable and open latency-constrained communication and thus enable a more efficient system design. In this talk we will show our recent work in using Software-Defined Networking (SDN) to provide standard interfaces for traffic flexibility. We proposed extending the SDN OpenFlow protocol with adequate services to take advantage of flexible real-time communication protocols and thus provide standard interfaces for flexible real-time reservations, too. We call it the Real-Time OpenFlow framework (RTOF). We end describing and assessing a prototype implementation based on the HaRTES Ethernet switches.
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