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The optimal generalized Byzantine Agreement in Cluster-based Wireless Sensor Networks

机译:基于集群的无线传感器网络中的最佳广义拜占庭协议

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A Wireless Sensor Network (WSN) is a wireless network consisting of spatially distributed autonomous devices using sensor nodes in a wide range of applications in various domains. In the future, WSNs are expected to be integrated into the "Internet of Things" (loT), where sensor nodes join the Internet dynamically, and use them to collaborate and accomplish their tasks. Because of the communications of WSN will produce a broadcast storm, the Cluster-based Wireless Sensor Network (CWSN) was proposed to ameliorate the broadcast storm. However, the capability of the fault-tolerance and reliability of CWSNs must be carefully investigated and analyzed. To cope with the influence of faulty components, reaching a common agreement in the presence of faults before performing certain tasks is essential. Byzantine Agreement (BA) problem is a fundamental problem in fault-tolerant distributed systems. To enhance fault-tolerance and reliability of CWSN, the BA problem in CWSN is revisited in this paper. In this paper, a new BA protocol is proposed that adapts to the CWSN and derives its limit of allowable faulty components, while maintaining the minimum number of message exchanges.
机译:无线传感器网络(WSN)是一种无线网络,由空间分布的自治设备组成,这些设备在各个领域的广泛应用中使用传感器节点。将来,WSN有望集成到“物联网”(loT)中,传感器节点将在其中动态加入Internet,并使用它们进行协作并完成其任务。由于WSN的通信将产生广播风暴,因此提出了基于群集的无线传感器网络(CWSN)来改善广播风暴。但是,必须仔细研究和分析CWSN的容错能力和可靠性。为了应对故障组件的影响,在执行某些任务之前必须在存在故障的情况下达成共识。拜占庭协议(BA)问题是容错分布式系统中的一个基本问题。为了提高CWSN的容错性和可靠性,本文重新讨论了CWSN中的BA问题。在本文中,提出了一种新的BA协议,该协议适用于CWSN并导出其允许的故障组件的限制,同时保持最少的消息交换数量。

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