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Differential Target Antenna Coupling (DTAC) EM Surveying with Stationary Transmitter Loop and Moving In-Loop Receivers

机译:差分目标天线耦合(DTAC)EM测量与静止发射器循环和移动循环接收器

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摘要

Following our previous studies of the Differential Target Antenna Coupling (DTAC) method with horizontal and vertical arrays for EM surveys, in this paper we study the application of the DTAC method to a different configuration, where a large, stationary transmitter loop is on the ground surface. We then run profile lines inside this loop. The DTAC method is effective in eliminating errors due to the large variations in the primary field along profile lines within the transmitting loop. Operational tests show that we obtain more diagnostic DTAC anomalies over buried targets than using just the B-x and B-y data. The DTAC method also produces smaller false-alarm targets due to background geology variations, compared with B-z measurements. The DTAC method can be used with either time- or frequency-domain data and the receiver can be moved on the ground or deployed from an airborne vehicle, such as a drone.
机译:遵循我们对具有水平和垂直阵列的差分目标天线耦合(DTAC)方法进行EM调查的研究,在本文中,我们研究DTAC方法在不同的配置中的应用,其中一个大型固定发射器环路 表面。 然后我们在此循环中运行配置文件线。 DTAC方法在消除由于发送环内的轮廓线沿着轮廓线的大变化而有效的误差。 操作测试表明,我们在埋地目标中获得更多诊断DTAC异常,而不是使用B-X和B-Y数据。 与B-Z测量相比,DTAC方法也产生了由于背景地质变化而产生的较小的假警报目标。 DTAC方法可以与时间或频域数据一起使用,并且接收器可以在地面上移动或从机载车辆(例如无人机)部署。

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