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An Adaptability-Enhanced Routing Method for Multiple Gateway-Based Wireless Sensor Networks Using Secure Dispersed Data Transfer

机译:基于多网关的无线传感器网络使用安全分散数据传输的适应性增强路由方法

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In conventional wireless sensor networks (hereinafter referred to as WSNs), the single sink node model has been employed to collect and store the measured data that can be accessed by external users of WSNs. However, the single sink model of WSNs can be the single point of failure for some usage. To counter this problem, we can employ multiple gateway-based WSNs. In addition, WSNs are susceptible to various kinds of attacks such as eavesdropping. To counter eavesdropping, we already have proposed the secret sharing scheme-based secure dispersed data transfer method (hereinafter referred to as the secure dispersed data transfer method). While we had confirmed that the secure dispersed data transfer method is effective to counter eavesdropping through the use of radio area disjoint multiple paths, we also found that the secure dispersed data transfer method cannot be effective in severe environments such as in a network with a low density of nodes. In this paper, we propose a new adaptability-enhanced routing method for multiple gateway-based WSNs by using the secure dispersed data transfer method. Our proposed method employed the gateway placement scheme, the routing scheme, and the data forwarding scheme. We also have implemented our proposed method on the QualNet simulator. We have confirmed that our proposed method can work well in severe environments such as low density networks without dramatic degradation of the data packet delivery ratio and the security.
机译:在传统的无线传感器网络(下文中称为WSN)中,已经采用单个汇聚节点模型来收集和存储可以由WSN的外部用户访问的测量数据。但是,WSN的单个水槽模型可以是某些用法的单点故障。为了反击这个问题,我们可以使用基于网关的WSN。此外,WSNS易于各种攻击,例如窃听。为了对抗窃听,我们已经提出了基于秘密共享方案的安全分散数据传送方法(下文中称为安全分散数据传输方法)。虽然我们确认安全分散的数据传输方法通过使用无线电区域不相交的多条路径对计数器窃听进行计数器,但我们还发现安全分散的数据传输方法不能在诸如在具有低的网络中的恶劣环境中有效节点密度。在本文中,我们通过使用安全分散的数据传输方法提出了一种新的适应性增强的基于网关的WSN的路由方法。我们所提出的方法采用网关放置方案,路由方案和数据转发方案。我们还在Qualnet模拟器上实施了我们提出的方法。我们已经证实,我们的建议方法可以在低密度网络等恶劣环境中运作良好,而不会急剧下降数据包传递比和安全性。

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