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首页> 外文期刊>IEEE Communications Magazine >Data Collection in MI-Assisted Wireless Powered Underground Sensor Networks: Directions, Recent Advances, and Challenges
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Data Collection in MI-Assisted Wireless Powered Underground Sensor Networks: Directions, Recent Advances, and Challenges

机译:MI辅助无线电源地下传感器网络中的数据收集:方向,最近的进展和挑战

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Wireless underground sensor networks (WUSNs) facilitate remote monitoring and control of various underground environments, which are suffering from a significant reliability problem. To address this problem and relieve the ongoing networking challenges, we propose a new concept, called the magnetic induction (MI)-assisted wireless powered underground sensor network (MI-WPUSN), which integrates the advantages of MI communication techniques with those of wireless power transfer mechanisms. MI-WPUSN offers a unique platform consisting of seven envisioned devices and four distinct communication modes to provide significant reliability potential, which is constrained by its complex and challenging data collection. To unlock the potential of MI-WPUSN, we provide a systematic research roadmap for MI-WPUSN data collection, spreading from sensor deployment to multiple channel access control and to frequency-selective routing establishment. Specifically, we first summarize the state-of-the-art research advances on sensor deployment, based on which we propose a bidirectional projection-based deployment topology that achieves high network reliability and discuss the sensor numerical determination problem resorting to weighted Voronoi diagrams. We then introduce the principles for multiple channel access control and review the existing research. Finally, after introducing kernel regression methods that can easily handle the frequency-selective property of MI-WPUSN, we develop a modified Q-learning-based routing protocol. In particular, we list and analyze the underlying challenges and related future issues in each direction.
机译:无线地下传感器网络(WUSN)促进了远程监控和控制各种地下环境,这些环境遭受显着的可靠性问题。为了解决这个问题并减轻持续的网络挑战,我们提出了一种新的概念,称为磁感应(MI)译本无线电源地下传感器网络(MI-WPUSN),这集成了MI通信技术与无线电力的优势转移机制。 MI-WPUSN提供由七种设想的设备和四种不同的通信模式组成的独特平台,以提供显着的可靠性电位,这受其复杂和具有挑战性的数据收集的限制。要解锁MI-WPUSN的潜力,我们为MI-WPUSN数据收集提供了系统的系统研究路线图,从传感器部署传播到多个通道访问控制以及频率选择性路由建立。具体而言,我们首先总结了传感器部署的最先进的研究进步,基于我们提出了基于双向投影的部署拓扑,实现了高网络可靠性,并讨论了加权voronoi图的传感器数值确定问题。然后,我们介绍了多频道访问控制的原则,并查看现有研究。最后,在引入可以容易地处理MI-WPUSN的频率选择性的内核回归方法之后,我们开发了一种修改后的基于Q学习的路由协议。特别是,我们列出并分析了每个方向的潜在挑战和相关的未来问题。

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