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

机译:一种新型的高灵敏度地下电磁传感系统:第一部分-系统设计

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摘要

We have developed a prototype frequency-domain electromagnetic geophysical system that currently has a usable dynamic range of 134 dB. In order to achieve this large dynamic range, we substantially reduced the measurement errors that are common limiting factors in achieving high measurement sensitivity. First, we reduced the measurement error caused by mechanical deformations of the measurement apparatus from 70 ppm to the order of 0.1 ppm. Second, as a result of developing a novel Alternating Target Antenna Coupling (ATAC) measurement method, we reduced the temporal drift from 400 ppm to the order of 0.1 ppm over a 50 min time period. Finally, as a result of using transmitter and receiver monitoring and dynamic calibration, we reduced the percentage error in the Real and Imaginary components of the target response, measured over a 105-minute period of time, from 5% and 80% to 0.5% and 2%, respectively. By increasing the TX moment, further increasing the TX/RX stability, and reducing the RX noise level, we estimate that the full potential of the ATAC system can achieve a usable dynamic range of the order of 200 dB.
机译:我们已经开发了一种原型频域电磁 地球物理系统,该系统目前具有134 dB的可用动态范围 。为了实现如此大的动态范围, 我们在实现高测量灵敏度时,大幅减少了常见的 限制因素的测量误差。 首先,将由测量设备的机械 变形引起的测量误差从70 ppm降低到 0.1 ppm。其次,作为开发 新颖的交替目标天线耦合(ATAC)测量方法的结果,我们将时间漂移从400 ppm减小到了 在50分钟的时间内约为0.1 ppm。最后,由于使用了发射器和接收器监视以及 动态校准的结果,我们减少了目标的 实部和虚部中的百分比误差在105分钟的时间内测量的 响应,分别从5%和80%降至0.5%和 2%。通过增加TX力矩,进一步提高TX / RX稳定性,并降低RX噪声水平,我们估计 ATAC系统的全部潜力可以实现可用。 sup> 动态范围为200 dB。

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

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

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

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