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A Network Topology Control and Identity Authentication Protocol with Support for Movable Sensor Nodes

机译:支持可移动传感器节点的网络拓扑控制和身份认证协议

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It is expected that in the near future wireless sensor network (WSNs) will be more widely used in the mobile environment, in applications such as Autonomous Underwater Vehicles (AUVs) for marine monitoring and mobile robots for environmental investigation. The sensor nodes’ mobility can easily cause changes to the structure of a network topology, and lead to the decline in the amount of transmitted data, excessive energy consumption, and lack of security. To solve these problems, a kind of efficient Topology Control algorithm for node Mobility (TCM) is proposed. In the topology construction stage, an efficient clustering algorithm is adopted, which supports sensor node movement. It can ensure the balance of clustering, and reduce the energy consumption. In the topology maintenance stage, the digital signature authentication based on Error Correction Code (ECC) and the communication mechanism of soft handover are adopted. After verifying the legal identity of the mobile nodes, secure communications can be established, and this can increase the amount of data transmitted. Compared to some existing schemes, the proposed scheme has significant advantages regarding network topology stability, amounts of data transferred, lifetime and safety performance of the network.
机译:预计在不久的将来,无线传感器网络(WSN)将在移动环境中得到更广泛的应用,例如用于海洋监测的自动水下航行器(AUV)和用于环境调查的移动机器人。传感器节点的移动性很容易导致网络拓扑结构的变化,并导致传输数据量下降,能耗过多以及缺乏安全性。为了解决这些问题,提出了一种高效的节点移动性拓扑控制算法(TCM)。在拓扑构建阶段,采用了一种有效的聚类算法,该算法支持传感器节点的移动。它可以确保群集的平衡,并减少能耗。在拓扑维护阶段,采用基于纠错码(ECC)的数字签名认证和软切换的通信机制。在验证了移动节点的合法身份之后,可以建立安全的通信,这可以增加传输的数据量。与某些现有方案相比,该方案在网络拓扑稳定性,传输的数据量,网络寿命和安全性能方面具有显着优势。

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