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Toward Energy-Efficient and Robust Large-Scale WSNs: A Scale-Free Network Approach

机译:迈向节能高效的大型WSN:无标度网络方法

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摘要

Due to the limited battery power of sensor nodes and harsh deployment environment, it is of fundamental importance and a great challenge to achieve high energy efficiency and strong robustness in large-scale wireless sensor networks (LS-WSNs). To this end, we propose two self-organizing schemes for LS-WSNs. The first scheme is the energy-aware common neighbor scheme, which considers the neighborhood overlap in link establishment. The second scheme is energy-aware low potential-degree common neighbor (ELDCN) scheme, which considers both neighborhood overlap in topology formation and the potential degrees of common neighbors. Both schemes generate clustering-based and scale-free-inspired LS-WSNs, which are energy-efficient and robust. However, the ELDCN scheme shows higher energy efficiency and stronger robustness to node failures, because it avoids establishing links to hub-nodes with high potential connectivity. Analytical and simulation results demonstrate that our proposed schemes outperform the existing scale-free evolution models in terms of energy efficiency and robustness.
机译:由于传感器节点的电池电量有限以及恶劣的部署环境,在大规模无线传感器网络(LS-WSN)中实现高能效和强大的鲁棒性具有根本的重要性和巨大的挑战。为此,我们提出了两种针对LS-WSN的自组织方案。第一种方案是能量感知的公共邻居方案,该方案考虑链路建立中的邻域重叠。第二种方案是能量感知的低电势度公共邻居(ELDCN)方案,该方案同时考虑了拓扑结构形成过程中的邻域重叠和公共邻居的潜​​在程度。两种方案都可以生成基于集群和无标度的LS-WSN,它们既节能又可靠。但是,ELDCN方案显示出更高的能源效率和对节点故障的更强的鲁棒性,因为它避免了建立到具有高潜在连接性的集线器节点的链接。分析和仿真结果表明,我们提出的方案在能效和鲁棒性方面优于现有的无标度演化模型。

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