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Optimal multipath congestion control and request forwarding in information-centric networks: Protocol design and experimentation

机译:信息中心网络中的最佳多路径拥塞控制和请求转发:协议设计和实验

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In this paper we consider the problem of joint congestion control and request forwarding in Information Centric Networks, namely the named-data networking architecture (NDN). The network architecture we consider is based on information retrieval natively pull-based, driven by user requests, point-to-multipoint and intrinsically coupled with in-network caching. We formalize the problem as global optimization with non-linear objectives and linear constraints with the twofold objective of maximizing user throughput and minimizing overall network cost. We solve it via decomposition and derive a family of optimal congestion control strategies at the receiver and of distributed algorithms for dynamic request forwarding at network nodes. An experimental evaluation of our proposal is carried out in different network scenarios using realistic workloads, to assess the performance of our design and to highlight the benefits of an ICN approach. The experimentation is carried out using the NDN software router implementation on a large grid infrastructure deployed to enable experimental research. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,我们考虑了信息中心网络中的联合拥塞控制和请求转发问题,即命名数据网络体系结构(NDN)。我们考虑的网络体系结构基于本机基于拉取的信息检索,由用户请求驱动,点对多点并本质上与网络内缓存耦合。我们将问题形式化为具有非线性目标和线性约束的全局优化,其双重目标是最大化用户吞吐量和最小化总体网络成本。我们通过分解来解决它,并在接收器处推导出一系列最佳的拥塞控制策略,并在网络节点上推导出用于动态请求转发的分布式算法。我们在不同的网络场景中使用实际的工作负载对我们的建议进行了实验评估,以评估我们的设计性能并强调ICN方法的优势。使用NDN软件路由器实施在大型网格基础结构上进行实验,该大型网格基础结构部署为支持实验研究。 (C)2016 Elsevier B.V.保留所有权利。

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