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A Trust-Based Predictive Model for Mobile Ad Hoc Network in Internet of Things ?

机译:物联网中移动自组织网络基于信任的预测模型?

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The Internet of things (IoT) is a heterogeneous network of different types of wireless networks such as wireless sensor networks (WSNs), ZigBee, Wi-Fi, mobile ad hoc networks (MANETs), and RFID. To make IoT a reality for smart environment, more attractive to end users, and economically successful, it must be compatible with WSNs and MANETs. In light of this, the present paper discusses a novel quantitative trust model for an IoT-MANET. The proposed trust model combines both direct and indirect trust opinion in order to calculate the final trust value for a node. A Beta probabilistic distribution is used to combine different trust evidences and direct trust has been calculated. The theory of ARMA/GARCH has been used to combine the recommendation trust evidences and predict the resultant trust value of each node in multi-step ahead. Further, a routing protocol has been designed to ensure the secure and reliable end-to-end delivery of packets by only considering trustworthy nodes in the path. Simulation results show that our proposed trust model outperforms similar existing trust models.
机译:物联网(IoT)是不同类型的无线网络的异构网络,例如无线传感器网络(WSN),ZigBee,Wi-Fi,移动自组织网络(MANET)和RFID。为了使物联网成为智能环境的现实,对最终用户更具吸引力并在经济上取得成功,它必须与WSN和MANET兼容。有鉴于此,本文讨论了一种新型的IoT-MANET定量信任模型。所提出的信任模型结合了直接和间接信任意见,以便计算节点的最终信任值。 Beta概率分布用于组合不同的信任证据,并且已经计算出直接信任。 ARMA / GARCH理论已被用来组合推荐信任证据,并在多个步骤中预测每个节点的结果信任值。此外,已经设计了路由协议以仅通过考虑路径中的可信赖节点来确保分组的安全可靠的端到端传送。仿真结果表明,我们提出的信任模型优于类似的现有信任模型。

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