基于电极的穿过地球(TTE)通信的电磁场

Lincan Yan, Chenming Zhou, M. Reyes, B. Whisner, N. Damiano
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引用次数: 4

摘要

一种基于电极的穿地(TTE)或线性TTE通信系统通过驱动交流电进入地面,直接通过矿井的地面覆盖层发送信号。产生的电流,存在于接收器上,被检测为电压并建立通信。基于电极的TTE系统可以实现相当大的传输范围>305米(1000英尺)。这种系统可用于靠近避难所或其他战略位置等区域的紧急通信,以建立地下矿工与地面之间的通信。由于它不依赖于地下广泛的基础设施,这种通信将提供一条离开矿井的替代路径。考虑到地面的衰减特性(这是决定TTE系统性能的主要因素),可以估计和确定通信所需的接收灵敏度、发射天线的长度和方向、工作频率和发射电流。为了估计大地衰减,导出了齐次半空间中基于电极的TTE通信系统电场分布的解析解。一个原型系统被建造并在一个矿场进行了测试。将试验数据与建模结果进行了比较,两者吻合较好。
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E-fields of electrode-based through-the-earth (TTE) communication
An electrode-based through-the-earth (TTE), or linear TTE, communication system sends its signal directly through the earth overburden of a mine by driving an AC current into the earth. The resultant current, present at the receiver, is detected as a voltage and communication is established. The electrode-based TTE system may achieve a considerably large transmission range >305 m (1000 ft). This kind of system may be implemented for emergency communication close to an area such as a refuge alternative or other strategic location to establish communication between underground miners and the surface. Since it does not rely on extensive infrastructure underground, this communication would provide an alternate path out of the mine. Given the attenuation characteristics of the earth-which is the major factor determining the performance of TTE systems-the receiver sensitivity, transmitter antenna length and orientation, working frequency, and transmitted current required for communication can be estimated and determined. In an effort to estimate the earth attenuation, the analytic solution for the electrical field distribution of an electrode-based TTE communication system in a homogenous half-space is derived. A prototype system was built and tested at a mine site. The test data is compared with the modeling results, and a close agreement is found between them.
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