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A Rational Exchange Protocol under Asymmetric Information in Wireless Sensor Networks

机译:无线传感器网络中非对称信息下的合理交换协议

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P2P network is one of the most extensive network frameworks for wireless sensor network (WSN) in Internet of Things (IoT). The peers in WSN are rational and often free ride to save power of electricity and calculation, due to the fact that the usability is of great variability and unpredictability. Such a phenomenon tremendously reduces the quality of service (QoS) in WSN. Rational exchange protocol aims at promoting QoS and guaranteeing security and fairness. However, existing schemes have taken only complete information into account, which is not up to realistic environment. The peers in realistic environment indeed possess incomplete information, which is, however, still not thoroughly investigated so far. In this paper, under asymmetric information (a typical incomplete information), an entropy based incentive model is well designed based on Markov model and QoS evaluation model to help peers cooperate in WSNs. A concrete utility function with entropy is constructed to evaluate decision utility in P2P network. Finally, an entropy based rational exchange protocol is proposed based on the presented incentive model and concrete utility function, with analysis of correctness, security, fairness, and robustness, respectively. The proposed protocol can facilitate rational peers positively and sensibly participating in services and prevent free riding for rational peers. Hence, it further promotes QoS and guarantees security and fairness simultaneously in WSNs.
机译:P2P网络是物联网(IoT)中用于无线传感器网络(WSN)的最广泛的网络框架之一。由于可用性具有很大的可变性和不可预测性,因此WSN中的同行是理性的,通常会搭便车以节省电力和计算量。这种现象极大地降低了WSN中的服务质量(QoS)。合理的交换协议旨在促进QoS并保证安全性和公平性。然而,现有的方案仅考虑了完整的信息,这与实际环境无关。现实环境中的同龄人确实拥有不完整的信息,但是,到目前为止,尚未对其进行彻底调查。本文在非对称信息(典型的不完全信息)下,基于马尔可夫模型和QoS评估模型,设计了一种基于熵的激励模型,以帮助对等体在无线传感器网络中进行协作。构造了一个带有熵的具体效用函数,以评估P2P网络中的决策效用。最后,在给出的激励模型和具体效用函数的基础上,提出了一种基于熵的有理交换协议,并分别进行了正确性,安全性,公平性和鲁棒性分析。所提出的协议可以促进理性对等人积极,明智地参与服务,并防止理性对等人搭便车。因此,它进一步提升了QoS,并同时保证了WSN中的安全性和公平性。

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