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A Transmission Power Optimization with a Minimum Node Degree for Energy-Efficient Wireless Sensor Networks with Full-Reachability

机译:具有完全可达性的节能无线传感器网络的最小节点度传输功率优化

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摘要

Transmission power optimization is the most significant factor in prolonging the lifetime and maintaining the connection quality of wireless sensor networks. Un-optimized transmission power of nodes either interferes with or fails to link neighboring nodes. The optimization of transmission power depends on the expected node degree and node distribution. In this study, an optimization approach to an energy-efficient and full reachability wireless sensor network is proposed. In the proposed approach, an adjustment model of the transmission range with a minimum node degree is proposed that focuses on topology control and optimization of the transmission range according to node degree and node density. The model adjusts the tradeoff between energy efficiency and full reachability to obtain an ideal transmission range. In addition, connectivity and reachability are used as performance indices to evaluate the connection quality of a network. The two indices are compared to demonstrate the practicability of framework through simulation results. Furthermore, the relationship between the indices under the conditions of various node degrees is analyzed to generalize the characteristics of node densities. The research results on the reliability and feasibility of the proposed approach will benefit the future real deployments.
机译:传输功率优化是延长使用寿命和保持无线传感器网络连接质量的最重要因素。节点的未优化传输功率会干扰或无法链接相邻节点。传输功率的优化取决于预期的节点度和节点分布。在这项研究中,提出了一种节能和完全可达的无线传感器网络的优化方法。在提出的方法中,提出了一种具有最小节点度的传输范围的调整模型,该模型着重于拓扑控制以及根据节点度和节点密度对传输范围进行优化。该模型调整了能效和完全可达性之间的权衡,以获得理想的传输范围。另外,连接性和可达性被用作性能指标,以评估网络的连接质量。比较了这两个指标,以通过仿真结果证明框架的实用性。此外,分析了各种节点度条件下的指标之间的关系,以概括节点密度的特征。有关该方法的可靠性和可行性的研究结果将有益于未来的实际部署。

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