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A light-weight solution for selfish nodes problem considering battery status in wireless ad-hoc networks

机译:无线自组网中考虑电池状态的自私节点问题的轻量级解决方案

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In mobile ad hoc networks (MANETs), nodes depend on each other for routing and forwarding packets. Cooperation among nodes is a key issue in such an environment. However, some of the nodes in MANETs may behave selfishly and may not forward packets to save battery and other resources. Since nodes in MANETs communicate on a peer-to-peer basis without any central authority (which can monitor selfish behavior of nodes), a centralized solution to stimulate cooperation is not suitable. In this paper, we present a fully distributed solution to force nodes' cooperation. The solution is light-weight in that neighbor monitoring is on-demand, and nodes work in promiscuous mode only part time to save battery. Besides, we provide fairness to nodes in the network by considering their battery status. We incorporate our light-weight solution for selfish node problems considering battery status in AODV. To evaluate the performance of our scheme, we conducted simulation using Glomosim. Simulation results show that the proposed scheme improves data forwarding capability substantially in presence of selfish nodes, identifies the selfish nodes accurately and has low overhead.
机译:在移动自组织网络(MANET)中,节点相互依赖以路由和转发数据包。在这种环境下,节点之间的合作是一个关键问题。但是,MANET中的某些节点可能表现得很自私,可能不转发数据包以节省电池和其他资源。由于MANET中的节点是在对等基础上进行通信而没有任何中央权限(可以监视节点的自私行为),因此刺激协作的集中式解决方案是不合适的。在本文中,我们提出了一种完全分布式的解决方案来强制节点协作。该解决方案重量轻,因为按需进行邻居监视,并且节点仅在部分时间以混杂模式工作以节省电池。此外,我们通过考虑节点的电池状态为网络中的节点提供公平性。考虑到AODV中的电池状态,我们采用了针对自私节点问题的轻型解决方案。为了评估我们方案的性能,我们使用Glomosim进行了仿真。仿真结果表明,该方案在存在自私节点的情况下大大提高了数据转发能力,能够准确识别自私节点,具有较低的开销。

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