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A Responsibility-based Transport Control for Named Data Networking

机译:基于责任的命名数据网络传输控制

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Transport Control in Named Data Networking (NDN) architecture is a challenging task. The lack of end-to-end communications in this architecture makes traditional, timeout-driven transport control schemes inefficient and wasteful. Hop-by-hop transport control is an alternative solution to tackle this problem that because of the stateful forwarding plan of NDN can be applied more easily than the IP networks. Most existing solutions in this direction assume known link bandwidths and Data packet sizes or require a loop-free multipath forwarding strategy to work well, but these assumptions do not always hold true and there exist no a loop-free multipath forwarding strategy among the existing forwarding strategies for NDN. In this paper, a Responsibility-based Transport Control (RTC) protocol for NDN is proposed. This protocol does not make strong assumptions about the network and avoids looping paths by applying a window-based rate control mechanism and a capacity-aware, multipath forwarding strategy in each face. In RTC, routers maintain a congestion window in each face and decide on accepting or refusing to take responsibility for forwarding of a newly received Interest packet through exchanging three new control packets. These control packets provide reliable information for managing the congestion windows and capacity-aware traffic splitting in routers. They also enable diverse deployment scenarios for NDN such as IP-overly and wireless links. The RTC is implemented in ndnSIM and its capability in managing congestion, achieving high throughput and providing flow fairness are demonstrated through extensive simulations.
机译:命名数据网络(NDN)体系结构中的传输控制是一项艰巨的任务。此体系结构中缺乏端到端通信,这使得超时驱动的传统传输控制方案效率低下且浪费。逐跳传输控制是解决此问题的替代解决方案,因为NDN的有状态转发计划比IP网络更容易应用。此方向上的大多数现有解决方案都采用已知的链路带宽和数据包大小,或者需要无环多路径转发策略才能正常工作,但是这些假设并不总是成立,并且现有转发之间不存在无环多路径转发策略。 NDN策略。本文提出了一种基于责任的NDN传输控制(RTC)协议。该协议没有对网络做出强力假设,并且通过在每个面上应用基于窗口的速率控制机制和容量感知的多路径转发策略来避免环路。在RTC中,路由器在每个面上都维持一个拥塞窗口,并决定通过交换三个新的控制数据包来接受或拒绝承担转发新接收到的兴趣数据包的责任。这些控制数据包提供可靠的信息,用于管理路由器中的拥塞窗口和容量感知流量拆分。它们还支持NDN的多种部署方案,例如IP覆盖和无线链接。 RTC在ndnSIM中实现,并且通过广泛的仿真展示了其在管理拥塞,实现高吞吐量和提供流公平性方面的能力。

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