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Hierarchical DHT-based name resolution for information-centric networks

机译:基于分层DHT的以信息为中心的网络名称解析

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Information-centric network (ICN) architectures are an increasingly important approach for the future Internet. Several ICN approaches are based on a flat object ID namespace and require some kind of global name resolution service to translate object IDs into network addresses. Building a world-wide NRS for a flat namespace with 1016 expected IDs is challenging because of requirements such as scalability, low latency, efficient network utilization, and anycast routing that selects the most suitable copies. In this paper, we present a general hierarchical NRS framework for flat ID namespaces. The framework meets those requirements by the following properties: The registration and request forwarding matches the underlying network topology, exploits request locality, supports domain-specific copies of binding entries, can offer constant hop resolution (depending on the chosen underlying forwarding scheme), and provides scoping of publications. Our general NRS framework is flexible and supports different instantiations. These instantiations offer an important trade-off between resolution-domain (i.e. subsystem) autonomy (simplifying deployment) and reduced latency, maintenance overhead, and memory requirements. To evaluate this trade-off and explore the design space, we have designed two specific instantiations of our general NRS framework: MDHT and HSkip. We have performed a theoretical analysis and a simulation-based evaluation of both systems. In addition, we have published an implementation of the MDHT system as open source. Results indicate that an average request latency of (well) below 100 ms is achievable in both systems for a global system with 12 million NRS nodes while meeting our other specific requirements. These results imply that a flat namespace can be adopted on a global scale, opening up several design alternatives for information-centric network architectures.
机译:以信息为中心的网络(ICN)架构是未来Internet越来越重要的方法。几种ICN方法基于平面对象ID名称空间,并且需要某种全局名称解析服务才能将对象ID转换为网络地址。由于具有可伸缩性,低延迟,有效的网络利用率以及选择最合适副本的选播路由等要求,因此为具有1016个预期ID的平面名称空间构建全球NRS极具挑战性。在本文中,我们提出了用于扁平ID名称空间的通用分层NRS框架。该框架通过以下属性满足这些要求:注册和请求转发与基础网络拓扑匹配,利用请求局部性,支持绑定条目的特定于域的副本,可以提供恒定的跃点分辨率(取决于所选的基础转发方案),以及提供出版物范围。我们通用的NRS框架非常灵活,并支持不同的实例。这些实例化在解析域(即子系统)自治性(简化部署)与减少的延迟,维护开销和内存需求之间提供了重要的权衡。为了评估这种权衡并探索设计空间,我们设计了通用NRS框架的两个特定实例:MDHT和HSkip。我们对这两个系统都进行了理论分析和基于仿真的评估。此外,我们已将MDHT系统的实现发布为开源。结果表明,对于具有1200万个NRS节点的全局系统,这两个系统都可以达到(远)低于100毫秒的平均请求延迟,同时满足我们的其他特定要求。这些结果表明,可以在全球范围内采用平面名称空间,从而为以信息为中心的网络体系结构开辟了几种设计选择。

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