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Analyzing behavioral selfishness in opportunistic environment using game theory

机译:用博弈论分析机会主义环境中的行为自私

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Delay Tolerant Networks (DTNs) or Opportunistic Networks are mobile networks, where there may not exist connectivity of nodes all the time. In view of the limited connectivity, DTNs rely upon the store-carry-and-forward approach for communication with each other. The efficiency of DTN routing protocol relies on the intelligent selection of a relay node from a set of encountering nodes. Most of the researchers have paid attention to relay selection while developing routing protocols ignoring node behavior, which will also have an impact of the routing performance. This is because, the main focus lies in developing an intelligent forwarding strategy so, they assume that all the nodes are altruistic in nature and cooperative with each other. However, we have studied the behavior of DTN nodes and found experimentally that not all the nodes will behave rationally and in a cooperative manner. Such non-cooperating behavior of nodes will affect the routing performance. So, we have used a game theoretic approach to make the nodes cooperative and thereby improving the routing performance metrics. We have analyzed the Prophet routing algorithm for our study and the experimental results show that the proposed method achieves better routing objectives in terms of delivery ratio, overhead ratio and delivery delay.
机译:时延容忍网络(DTN)或机会网络是移动网络,其中可能一直没有节点的连接。考虑到有限的连接性,DTN依赖于存储转发方法进行相互通信。 DTN路由协议的效率取决于从一组遇到的节点中智能选择中继节点。大多数研究人员在开发忽略节点行为的路由协议时都将注意力集中在中继选择上,这也会对路由性能产生影响。这是因为,主要重点在于开发智能转发策略,因此,他们假定所有节点本质上都是利他性的并且彼此协作。但是,我们研究了DTN节点的行为,并通过实验发现,并非所有的节点都将以合理的方式协同工作。节点的这种非合作行为将影响路由性能。因此,我们使用了一种博弈论方法来使节点协作,从而改善路由性能指标。我们对Prophet路由算法进行了分析,实验结果表明,该方法在传送比率,开销比率和传送延迟方面达到了更好的路由目标。

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