Minitype Arrays of Acoustically Actuated Magnetoelectric Antennas for Magnetic Induction Communication

声学 带宽(计算) 定向天线 偶极子天线 天线(收音机) 可重构天线 电磁感应 辐射模式 波长 振幅 水声通信 电子工程 水下 电气工程 计算机科学 物理 工程类 光学 天线效率 电信 地质学 电磁线圈 海洋学
作者
Shiyu Wang,Gaoqi Dou,Guangming Song
出处
期刊:Actuators [MDPI AG]
卷期号:13 (8): 276-276
标识
DOI:10.3390/act13080276
摘要

The magnetoelectric (ME) antennas rely on the mechanical movement of magnetic dipoles, making it possible to break the constraints on physical dimensions decided by the wavelength of the electromagnetic wavelength. The ME antennas achieve super-low frequency (SLF) communications with a smaller size to provide a novel solution for long-range, underwater, and underground communications; navigation over the horizon; and geological exploring. As a result, further theoretical research and optimization of ME antennas have been an open challenge for decades. Here, we report on minitype arrays of acoustically actuated ME antenna and their more rigorous equivalent circuits. These arrays of ME antenna adjust amplitude-frequency response through the mechanical regulation method. The mechanical parameters of ME antennas in the arrays result in regulating amplitude-frequency response, such as working frequency, fractional bandwidth, and intensity of magnetic induction. Our work provides a more accurate theoretical model and diverse array form over state-of-the-art ME antenna arrays. The frequency, fractional bandwidth, and magnetic induction strength of the ME antenna arrays were achieved to be adjustable in the ranges of 84 to 181 Hz, 3.9% to 8.3%, and two to four times, respectively. In addition, we have calculated the attenuation characteristics of ME antennas and their minitype arrays in seawater. The results show that the ME antenna array described in this manuscript is able to enhance the radiation intensity and information-loading capability, which has a positive potential for application in SLF communication systems.

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