An Experimental Study of Performance Enhancement of Medium-Frequency Small Loop Antennas for Through-the-Earth at 350 kHz

Suphawit Julthochai, P. Khamsalee, R. Wongsan
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Abstract

This paper presents an experimental investigation into enhancing the performance of medium frequency small loop antennas for Through-the-Earth (TTE) communication at an operating frequency of 350 kHz. The proposed small loop antenna is designed to have a 1/50 wavelength for use in cave environments. The experimental setup comprises a transmitter system with a signal generator and an earth-grounded antenna, and a receiver system with a small loop antenna and a spectrum analyzer, which is tested by transmitting signals from the transmitter to the receiver at a surface testing location. To enhance the performance of the receiver antenna, we investigate the effect of increasing the number of antennas, from one to two and four elements, to determine the optimal array arrangement. The experimental results are evaluated based on received power and antenna impedance. Our findings indicate that using a 4x1 vertical array antenna with small loop antennas induces the highest currents from the earth and improves signal power reception by up to 11.6 dB compared to a single small loop antenna.
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350 kHz中频小环天线穿地性能增强实验研究
本文提出了一种在工作频率为350 kHz时提高中频小环天线穿地通信性能的实验研究。所提出的小环形天线的波长设计为1/50,适用于洞穴环境。实验装置包括一个带有信号发生器和接地天线的发射系统,以及一个带有小环路天线和频谱分析仪的接收系统,通过在地面测试位置将信号从发射机发送到接收机进行测试。为了提高接收天线的性能,我们研究了增加天线数量的效果,从一个天线增加到两个天线和四个天线,以确定最佳的阵列布置。根据接收功率和天线阻抗对实验结果进行了评价。我们的研究结果表明,与单个小环路天线相比,使用带有小环路天线的4x1垂直阵列天线可诱导来自地球的最高电流,并可将信号接收功率提高11.6 dB。
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