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CONE: A Connected Dominating Set-Based Flooding Protocol for Wireless Sensor Networks

机译:CONE:无线传感器网络的基于连接的基于控制集的泛洪协议

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摘要

Wireless sensor networks (WSNs) play a significant role in a large number of applications, e.g., healthcare and industry. A WSN typically consists of a large number of sensor nodes which rely on limited power sources in many applications. Therefore, improving the energy efficiency of WSNs becomes a crucial topic in the research community. As a fundamental service in WSNs, network flooding offers the advantages that information can be distributed fast and reliably throughout an entire network. However, network flooding suffers from low energy efficiency due to the large number of redundant transmissions in the network. In this work, we exploit connected dominating sets (CDS) to enhance the energy efficiency of network flooding by reducing the number of transmissions. For this purpose, we propose a connected dominating set-based flooding protocol (CONE). CONE inhibits nodes that are not in the CDS from rebroadcasting packets during the flooding process. Furthermore, we evaluate the performance of CONE in both simulations and a real-world testbed, and then we compare CONE to a baseline protocol. Experimental results show that CONE improves the end-to-end reliability and reduces the duty cycle of network flooding in the simulations. Additionally, CONE reduces the average energy consumption in the FlockLab testbed by 15%.
机译:无线传感器网络(WSN)在医疗保健和工业等众多应用中起着重要作用。 WSN通常由大量传感器节点组成,这些传感器节点在许多应用中都依赖有限的电源。因此,提高无线传感器网络的能效成为研究界的重要课题。作为WSN的一项基本服务,网络泛洪具有以下优点:可以在整个网络中快速可靠地分发信息。然而,由于网络中大量的冗余传输,网络泛洪遭受了低能效的困扰。在这项工作中,我们利用连接控制集(CDS)通过减少传输数量来提高网络泛洪的能效。为此,我们提出了一种基于连接的控制集的泛洪协议(CONE)。在洪泛过程中,CONE禁止不在CDS中的节点重新广播数据包。此外,我们在仿真和实际测试平台上评估了CONE的性能,然后将CONE与基准协议进行了比较。实验结果表明,CONE在仿真中提高了端到端的可靠性,并降低了网络泛洪的占空比。此外,CONE将FlockLab测试台的平均能耗降低了15%。

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