An Efficient MI Waveguide Based Underground Wireless Communication for Smart Irrigation

S. Swathi, S. Santhanam
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引用次数: 7

Abstract

Underground (UG) wireless communication is challenging as the medium is heterogeneous composition of soil, rock, water, organic matter etc. The UG channel is subjected to change according to the location and weather conditions. Unlike the electromagnetic (EM) wave technique, Magnetic Induction (MI) technique can propagate in the dynamic UG channel with less path loss. In this paper, analyses on the performance of the underground channel using EM, MI and Magnetic Induction waveguide (MIWG) is carried. Path loss analysis of the channel is carried using the three techniques. The analysis is carried by varying the coil parameters like number of turns, radius of coil, angle of coil, wire resistance, relay interval etc. the optimization is also carried. The simulation results show that path loss in UG channel is reduced by 46% when MI waveguide technique is used instead of EM waves.
基于MI波导的高效地下无线通信智能灌溉
由于介质是土壤、岩石、水、有机物等非均质组成,地下无线通信具有挑战性。UG通道会根据所处位置和天气情况发生变化。与电磁(EM)波技术不同,磁感应(MI)技术可以在动态UG通道中传播,且路径损耗较小。本文对地下信道的性能进行了EM、MI和磁感应波导(MIWG)的分析。利用这三种技术对信道进行了路径损耗分析。通过改变线圈匝数、线圈半径、线圈角度、导线电阻、继电器间隔等参数进行分析,并进行优化。仿真结果表明,用MI波导技术代替电磁波,UG通道的路径损耗降低了46%。
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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