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A location based mobility prediction scheme for post disaster communication network using DTN

机译:使用DTN的灾后通信网络的基于位置的移动性预测方案

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Selection of next hop forwarder plays a pivotal role in timely and accurate dissemination of post disaster situational data to a predetermined destination. Prior knowledge about the probability of future presence of a node near the destination eases this process significantly. In this paper, we propose a location based mobility prediction scheme that helps in selecting the appropriate forwarder by predicting the mobility pattern of nodes. Researchers, over a considerable period, have proposed the use of DTN in setting up a post disaster communication network. DTN specific user mobility involves both periodic and slightly chaotic patterns; chaotic behavior being attributed to the sudden causal events triggering instantaneous node mobility. In our approach, we approximate the periodicity of the DTN node mobility and use that knowledge to facilitate forwarding. Each mobile node in this approach is expected to periodically sample its own position in terms of time-location pair. This information is shared by other nodes upon contact. The sampled data, from other nodes, are extrapolated for future time instances to predict the possible locations of the mobile nodes for the next few points in time. So, the node having minimal distance around the vicinity of the destination, in some future time, qualify as the next forwarder. We compare the results, thus obtained, with real location of the nodes in future mentioned time instances and simulation results show that our scheme provides satisfactory results in predicting mobility of nodes to a great extent.
机译:下一跳转发器的选择在将灾难后情况数据及时准确地分发到预定目标中起着关键作用。有关目的地附近节点将来可能存在的概率的先验知识大大简化了此过程。在本文中,我们提出了一种基于位置的移动性预测方案,该方案可通过预测节点的移动性模式来帮助选择合适的转发器。在相当长的一段时间内,研究人员提出了在建立灾后通信网络中使用DTN的建议。 DTN特定的用户移动性涉及周期性和轻微混乱的模式;混沌行为归因于触发瞬时节点移动性的突发因果事件。在我们的方法中,我们估算DTN节点移动性的周期性,并使用该知识来促进转发。预期该方法中的每个移动节点都将根据时间位置对定期采样其自身的位置。联系时其他节点共享此信息。从其他节点采样的数据将被外推到将来的时间实例中,以预测下几个时间点移动节点的可能位置。因此,在将来的某个时间,在目标附近具有最小距离的节点有资格成为下一个转发者。我们将由此获得的结果与未来提到的时间实例中节点的实际位置进行比较,仿真结果表明我们的方案在很大程度上预测节点的移动性方面提供了令人满意的结果。

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