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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Operation of a geophysical HTS SQUID system in sub-Arctic environments
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Operation of a geophysical HTS SQUID system in sub-Arctic environments

机译:亚北极环境中地球物理HTS SQUID系统的运行

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摘要

Transient ElectroMagnetic geophysical prospecting using SQUID sensors has demonstrated potential for improved target detection at late response times compared to conventional coil sensors. We have developed a three-axis, rf SQUID sensor system which has been extensively operated in sub-Arctic conditions by a geophysics contractor. Due to the harsh environmental and operating conditions, the system is designed to operate in sub-zero temperatures (as low as minus 40/spl deg/C) and is ruggedly packaged whilst still remaining quite portable. Auto-tuning of the rf electronics has been implemented by adjusting the rf SQUID control parameters via a microprocessor controller. After a small amount of training, regular field crews have operated two of these systems in the field continuously for periods of months at a time. An example, comparing SQUID B field data to coil dB/dt data, is presented in this paper.
机译:与传统的线圈传感器相比,使用SQUID传感器进行的瞬态电磁地球物理勘探已显示出在响应时间较晚时改善目标检测的潜力。我们开发了三轴RF SQUID传感器系统,该系统已由地球物理承包商在亚北极条件下广泛使用。由于恶劣的环境和操作条件,该系统设计为可在低于零的温度(低至负40 / spl deg / C)下运行,并且坚固耐用地包装,同时仍保持相当的便携性。射频电子设备的自动调谐是通过微处理器控制器调整射频SQUID控制参数来实现的。经过少量培训后,常规的现场工作人员一次连续几个月在野外连续操作了其中两个系统。本文提供了一个将SQUID B现场数据与线圈dB / dt数据进行比较的示例。

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