Impact of Rods Configuration on Electrodes Impedance of Through-the-Earth Communication System

Jianjun Hao, Yongfei Mou, Bingkuan Yan
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引用次数: 1

Abstract

Through-The-Earth (TTE) systems are usually applied in mining and cave rescues. In order to enlarge the communication range of TTE system with electrodes, the injection current intensity must be increased, and minimizing the impedance between electrodes is an efficient way to extend the transmission distance of the system. Aiming at decreasing the volume of electrodes resistance, several multi-rods electrode schemes are provided and implemented to test the impacts of rods amount, rod buried depth and arrangement on trans-impedance of electrodes. Experimental results illustrate that the electrodes resistance can be efficiently minimized by increasing the number of rods, and the electrodes impedance decreases with rod buried depth increase. Through unsuitable for underground implementation, rods configured in square or circle is slightly better than configured in line in reducing the electrodes resistance. However circle or square configuration is not suitable for underground. The experiments also demonstrate that the earth conductivity is an essential factor in TTE communications.
棒的配置对透地通信系统电极阻抗的影响
通过地球(TTE)系统通常应用于采矿和洞穴救援。为了扩大带电极的TTE系统的通信范围,必须增加注入电流强度,而减小电极间的阻抗是延长系统传输距离的有效途径。以减小电极电阻体积为目标,提出并实施了几种多棒电极方案,测试了多棒数量、多棒埋深和多棒布置对电极反阻抗的影响。实验结果表明,增加杆数可以有效地减小电极电阻,电极阻抗随杆埋深的增加而减小。虽然不适合在地下实施,但在降低电极电阻方面,方形或圆形配置的杆略优于直线配置的杆。但圆形或方形的配置不适合地下。实验还表明,大地电导率是TTE通信的重要因素。
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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