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Flexible and dynamic network coding for adaptive data transmission in DTNs

机译:DTN中自适应数据传输的灵活和动态网络编码

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Existing network coding approaches for Delay-Tolerant Networks (DTNs) do not detect and adapt to congestion in the network. In this paper we describe CafNC (Congestion aware forwarding with Network Coding) that combines adaptive network coding and adaptive forwarding in DTNs. In CafNC each node learns the status of its neighbours, and their ego-networks in order to detect coding opportunities, and codes as long as the recipients can decode. Our flexible design allows CafNC to efficiently support multiple unicast flows, with dynamic traffic demands and dynamic senders and receivers. We evaluate CafNC with two real connectivity traces and a realistic P2P application, introducing congestion by increasing the number of unicast flows in the network. Our results show that CafNC improves the success ratio, delay and packet loss, as the number of flows grows in comparison to no coding and hub-based static coding, while at the same time achieving efficient utilisation of network resources. We also show that static coding misses a number of coding opportunities and increases packet loss rates at times of increased congestion.
机译:用于延迟容忍网络(DTN)的现有网络编码方法无法检测并适应网络中的拥塞。在本文中,我们描述了在DTN中结合了自适应网络编码和自适应转发的CafNC(带有网络编码的拥塞感知转发)。在CafNC中,每个节点都会了解其邻居及其邻居网络的状态,以便检测编码机会,并在接收者可以解码的情况下进行编码。我们灵活的设计使CafNC可以有效地支持多个单播流,并具有动态的流量需求以及动态的发送方和接收方。我们用两个真实的连接轨迹和一个实际的P2P应用程序评估CafNC,通过增加网络中的单播流数量来引入拥塞。我们的结果表明,与无编码和基于集线器的静态编码相比,随着流数量的增加,CafNC可以提高成功率,延迟和丢包率,同时还可以有效利用网络资源。我们还表明,静态编码会错过许多编码机会,并会在拥塞增加时增加丢包率。

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