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首页> 外文期刊>Journal of Environmental & Engineering Geophysics >A New High-Sensitivity Subsurface Electromagnetic Sensing System: Part II--Measurement Results
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A New High-Sensitivity Subsurface Electromagnetic Sensing System: Part II--Measurement Results

机译:一种新型的高灵敏度地下电磁传感系统:第二部分-测量结果

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摘要

In a previous paper, we discussed the design of a new electromagnetic measurement system that employed an Alternating Target Antenna Coupling (ATAC) method to greatly improve the sensitivity and stability of the measurement system. In this paper, we demonstrate this new measurement system by applying it to the detection of various targets, including unexploded ordnance (UXO). First we demonstrate that this new measurement method increases survey efficiency because a richer data set is acquired at each measurement location. Our measurement results show that our current system will detect a standard pipe target at a 2.0-m depth below the earth's surface, which is 0.5-m deeper than the 1.5-m detection depth achieved by current state-of-the-art systems. When the full potential of the ATAC system is realized, we estimate that the projected depth of detection may increase to as much as 9 m. We also show that the measured responses of UXO are different based on the UXO's shape and material composition. The measurement results obtained with our current prototype show that the maximum range for detection of an 81-mm mortar and an 84-mm cannon projectile MK31 to be up to 1.25 m. When the full potential of the ATAC system is realized, we estimate that the projected depth of detection for these targets may increase to as much as 5 m.
机译:在上一篇文章中,我们讨论了一种新的电磁 测量系统的设计,该系统采用交替目标天线 耦合(ATAC)方法来大大提高灵敏度和 < / sup>测量系统的稳定性。在本文中,我们通过将其应用于各种目标(包括未爆炸弹药(UXO))的检测 来演示 这种新的测量系统。首先,我们演示了这种新的测量方法,因为在每个测量 位置获取了更丰富的数据集,因此提高了测量 的效率。我们的测量结果表明,我们当前的系统 将在 地球表面以下2.0-m的深度(比1.5-m的深度深0.5-m)处检测到标准管道目标。当前最先进系统实现的检测 深度。当实现ATAC系统的 的全部潜力时,我们估计 的预计探测深度可能会增加到 9 m。我们还表明,基于UXO的形状和材料成分,UXO的测量响应 是不同的。 使用我们当前的原型 获得的测量结果显示当ATAC系统的最大潜能为时,探测到81毫米迫击炮 和84毫米加农炮弹头MK31的最大范围可达1.25 m。 意识到,我们估计 这些目标的预计探测深度可能 增加到5 m。

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    Parkhomenko 21-12, Volgograd 400004 Russiakrichenk@hotmail.com;

    Laboratory for Advanced Subsurface Imaging, University of Arizona Tucson, AZ 85721-0012bkslasi@email.arizona.edu;

    Electrical and Computer Engineering, University of Arizona Tucson, AZ 85721dvorak@ece.arizona.edu;

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