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Joint Hop-by-hop and Receiver-Driven Interest Control Protocol for Content-Centric Networks

机译:以内容为中心的网络的逐跳和接收方驱动的联合兴趣控制协议

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摘要

Content-centric networking (CCN) advocates a new transport model tailored to named-data communication. Three features distinguish CCN transport from the TCP/IP model: unique endpoint at the receiver, pull-based data retrieval in a point to multi-point fashion and in-path caching. The definition of transport control mechanisms is of fundamental importance within the CCN architectural design and beyond, in the broader scope of information-centric networks. In this work, we propose a joint Hop-by-hop and Receiver-driven Interest Control Protocol (HR-ICP) to regulate user requests (Interests) either at the receiver and at intermediate nodes via Interest shaping. We prove that HR-ICP is stable and converges to an efficient and max-min fair equilibrium. Compared to controlling traffic only at the receiver, HR-ICP accelerates congestion reaction and reduces the loss rate, as we show by means of CCN packet-level simulations. In different network scenarios, we highlight the advantages of our solution in terms of faster convergence to the optimal throughput, robustness against misbehaving receivers and flow protection of delay-sensitive applications.
机译:以内容为中心的网络(CCN)提倡为命名数据通信量身定制的新传输模型。 CCN传输与TCP / IP模型之间的区别在于三个特征:接收器处的唯一端点,点对多点方式的基于拉的数据检索以及路径内缓存。传输控制机制的定义在CCN架构设计中以及在更广泛的以信息为中心的网络中至关重要。在这项工作中,我们提出了一种逐跳和接收方驱动的兴趣控制协议(HR-ICP),以通过兴趣整形来调节接收方和中间节点的用户请求(兴趣)。我们证明HR-ICP是稳定的,并且收敛到有效且最大-最小的公平平衡。与仅在接收器处控制流量相比,HR-ICP加速了拥塞反应并降低了丢失率,正如我们通过CCN数据包级模拟所显示的那样。在不同的网络场景中,我们强调了我们的解决方案的优势,包括更快地收敛到最佳吞吐量,针对接收器行为不佳的鲁棒性以及对延迟敏感的应用程序的流量保护。

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