Optimal energy-throughput efficiency for magneto-inductive underground sensor networks

Shih-Chun Lin, I. Akyildiz, Pu Wang, Zhi Sun
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引用次数: 9

Abstract

To provide constant channel conditions for a great deal of distributed wireless sensors, magneto-inductive (MI) propagation technique suggests an attractive facilitation of underground sensor networks (USNs) for MI-USNs. However, to put this MI method into practice, a reliable and efficient data transportation is a must to fulfill a pre-defined level of quality of service (QoS). In this paper, a complete study is first given for the different communication functionalities from physical to network layers as well as the QoS requirements of applications. Rather than adopting the currently layered approach, a two-phase cross-layer protocol, called Xlayer, is then proposed to deliver statistical QoS guarantees and obtain both optimal energy savings and throughput gain concurrently. Simulation results conform that Xlayer achieves significant energy savings, high throughput efficiency, and dependable MI communication, thus facilitating a new design paradigm for MI-USNs.
地下磁感应传感器网络的最优能量吞吐效率
为了为大量分布式无线传感器提供恒定的信道条件,磁感应(MI)传播技术为地下传感器网络(MI -USNs)提供了一个有吸引力的便利条件。然而,要将这种MI方法付诸实践,必须实现可靠和高效的数据传输,以满足预定义的服务质量(QoS)水平。本文首先对物理层到网络层的不同通信功能以及应用的QoS要求进行了全面的研究。而不是采用目前的分层方法,然后提出了一个两阶段的跨层协议,称为Xlayer,提供统计QoS保证,同时获得最佳的节能和吞吐量增益。仿真结果表明,Xlayer实现了显著的节能、高吞吐量效率和可靠的MI通信,从而促进了MI- usn的新设计范式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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