首页> 外文会议>2013 10th Annual IEEE Communications Society Conference on Sensor, Mesh and Ad Hoc Communications and Networks >Delay analysis of bursty traffic in finite-buffer disruption-tolerant networks with two-hop routing
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Delay analysis of bursty traffic in finite-buffer disruption-tolerant networks with two-hop routing

机译:具有两跳路由的有限缓冲区容错网络中突发流量的延迟分析

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We consider sparse mobile ad-hoc networks (i.e., disruption-tolerant networks or DTNs) wherein a direct communication path from a source to a destination via multiple hops does not exist due to both mobility and sparseness of the nodes. Hence, the nodes will deliver messages from source to destination using a “store, carry, and forward” strategy. Our goal is to analytically study the packet latency in such networks for a two-hop unicast scenario with bursty packet arrivals at the source. We exploit an embedded Markov chain approach combined with our novel iterative estimation technique to study both network delay and queuing delay. Constraints posed by both the limited node buffer size and contention between nodes for wireless channel are also considered in order to obtain a more realistic model. Finally, our iterative results are validated using simulations for well-known mobility models such as random walk on a grid and the random waypoint mobility.
机译:我们考虑稀疏的移动自组织网络(即,耐容忍网络或DTN),其中由于节点的移动性和稀疏性,不存在通过多跳从源到目的地的直接通信路径。因此,节点将使用“存储,携带和转发”策略将消息从源传递到目的地。我们的目标是针对具有突发性数据包到达源的两跳单播情况,分析研究此类网络中的数据包延迟。我们利用嵌入式马尔可夫链方法结合我们新颖的迭代估计技术来研究网络延迟和排队延迟。为了获得更现实的模型,还考虑了有限的节点缓冲区大小和无线信道节点之间的竞争所带来的约束。最后,我们的迭代结果通过使用众所周知的移动性模型(例如,网格上的随机行走和随机航点移动性)的仿真进行验证。

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