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Exploiting Small World Properties for Message Forwarding in Delay Tolerant Networks

机译:利用小世界属性在容错网络中进行消息转发

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In Delay Tolerant Networks (DTNs), the connections between mobile nodes are always disrupted and constant end-to-end paths rarely exist. In order to cope with these communication challenges, most existing DTN routing algorithms favour the “multi-hop forwarding” fashion where a message can be forwarded by multiple relay nodes in the hope that one of the employed relay nodes can deliver the message to the destination node. Since aggressively employing relay nodes may incur the intolerable delivery cost in DTNs, it is meaningful to design a cost-efficient routing algorithm that can achieve a high delivery performance. In this paper, we first design a novel delivery metric to measure the forwarding capability of nodes. Then, we utilize small-world properties to design the principles of relay node selection, e.g., limiting the number of relays and finding the appropriate relay nodes, and further develop a cost-efficient social-aware forwarding algorithm called TBSF. Extensive simulations on real mobility traces are conducted to evaluate the performance of TBSF, and the results demonstrate its efficiency and usefulness.
机译:在时延容忍网络(DTN)中,移动节点之间的连接始终会中断,并且几乎不存在恒定的端到端路径。为了应对这些通信挑战,大多数现有的DTN路由算法都支持“多跳转发”方式,其中消息可以由多个中继节点转发,希望所使用的中继节点之一可以将消息传递到目的地节点。由于积极采用中继节点可能会招致DTN中无法忍受的交付成本,因此设计一种能够实现高交付性能的经济高效的路由算法非常有意义。在本文中,我们首先设计了一种新颖的传递度量来度量节点的转发能力。然后,我们利用小世界的属性来设计中继节点选择的原理,例如限制中继的数量并找到合适的中继节点,然后进一步开发一种称为TBSF的具有成本效益的社会意识转发算法。对真实流动性轨迹进行了广泛的仿真,以评估TBSF的性能,结果证明了其有效性和实用性。

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