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Optimizing Bi-Directional Low-Latency Communication in Named Data Networking

机译:在命名数据网络中优化双向低延迟通信

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摘要

Content-Centric Networking (CCN) is an alternative to today's Internet IP-style packet-switched host-centric networking. One key feature of CCN is its focus on content distribution, which dominates current Internet traffic and which is not well-served by IP. Named Data Networking (NDN) is an instance of CCN; it is an on-going research effort aiming to design and develop a full-blown candidate future Internet architecture. Although NDN's emphasizes content distribution, it must also support other types of traffic, such as conferencing (audio, video) as well as more historical applications, such as remote login and file transfer. However, suitability of NDN for applications that are not obviously or primarily content-centric. We believe that such applications are not going away any time soon. In this paper, we explore NDN in the context of a class of applications that involve low-latency bi-directional (point-to-point) communication. Specifically, we propose a few architectural amendments to NDN that provide significantly better throughput and lower latency for this class of applications by reducing routing and forwarding costs. The proposed approach is validated via experiments.
机译:以内容为中心的网络(CCN)是当今Internet IP样式的分组交换以主机为中心的网络的替代方案。 CCN的一个关键功能是它专注于内容分发,该内容主要控制当前的Internet流量,并且IP不能很好地为其提供服务。命名数据网络(NDN)是CCN的一个实例;它是一项正在进行的研究工作,旨在设计和开发成熟的候选将来的Internet体系结构。尽管NDN强调内容分发,但它还必须支持其他类型的流量,例如会议(音频,视频)以及更古老的应用程序,例如远程登录和文件传输。但是,NDN是否适用于显然不是或主要以内容为中心的应用程序。我们认为,此类应用不会很快消失。在本文中,我们在涉及低延迟双向(点对点)通信的一类应用程序的上下文中探索NDN。具体来说,我们提议对NDN进行一些体系结构修订,以通过降低路由和转发成本为此类应用程序提供明显更好的吞吐量和更低的延迟。通过实验验证了所提出的方法。

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