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Optimizing Superframe and Data Buffer to Achieve Maximum Throughput for 802.15.4-Based Energy Harvesting Wireless Sensor Networks

机译:优化超帧和数据缓冲区,实现基于802.15.4的能量收集无线传感器网络的最大吞吐量

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摘要

Energy harvesting wireless sensor networks (EH-WSNs) intend to support sustainable operations. It is important to design a high-throughput data delivery scheme that adapts to the fluctuation in harvested energy in the EH-WSN nodes. In this article, the optimal superframe and data buffer scheme (OSDBS) is investigated to improve the throughput of IEEE 802.15.4 beacon-enabled EH-WSNs. A stochastic model is developed for OSDBS, which leads to the characterization of network throughput and packet delay. The OSDBS achieves the maximum throughput through setting the optimal superframe and buffer sizes of the nodes, which are the solution of the formulated optimization problem that maximizes the network throughput with consideration of energy-harvesting rate and data arrival rate. The simulation results show the OSDBS significantly outperforms the existing schemes in terms of throughput.
机译:能量收集无线传感器网络(EH-WSN)打算支持可持续运营。重要的是设计一种高吞吐量数据传送方案,它适应EH-WSN节点中的收获能量的波动。在本文中,研究了最佳超帧和数据缓冲器方案(OSDB)以改善IEEE 802.15.4支持的EH-WSN的吞吐量。为OSDBS开发了一种随机模型,导致网络吞吐量和数据包延迟的表征。 OSDBS通过设置节点的最佳超帧和缓冲区尺寸来实现最大吞吐量,这是配方优化问题的解决方案,以考虑到能量收获率和数据到达率来最大化网络吞吐量。仿真结果显示OSDBS在吞吐量方面显着优于现有方案。

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