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Data diversity for UXO discrimination in realistic settings with a handheld EMI sensor

机译:借助手持式EMI传感器在现实环境中区分UXO的数据多样性

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摘要

Electromagnetic induction sensing (EMI), between ~ 10's of Hz and 100's of kHz, may show the strongest promise for discrimination of subsurface, shallow metallic objects such as unexploded ordnance (UXO). While EMI signals penetrate the soil readily, resolution is low and responses are sometimes ambiguous. For crucial discrimination progress, maximum data diversity is desirable in terms of look angles, frequency spectrum, and full vector scattered field data. Newly developed instrumentation now offers the possibility of full vector UWB EMI data with flexible look angle and sensor distance/sweep, defined by precise laser positioning. Particulars of the equipment and resulting data are displayed. An indication is given of potential advantages for reducing the chronic ill-conditioning of inversion calculations with EMI data, when one takes advantage of the data diversity made possible by the instrumental advances. Some EMI measurement issues cannot be solved by EMI data diversity, as when small surface clutter above a much larger UXO effectively blinds an EMI sensor. EMI surveying must be supplemented by or sometimes replaced by ground penetrating radar (GPR) approaches in such instances.
机译:电磁感应感测(EMI)介于Hz的10到100 kHz之间,可能显示出对地下,浅金属物体(如未爆炸弹药(UXO))进行辨别的最大希望。尽管EMI信号很容易穿透土壤,但分辨率很低,响应有时会模棱两可。对于关键的分辨进展,就视角,频谱和全矢量散射场数据而言,最大的数据多样性是可取的。现在,新开发的仪器提供了通过精确的激光定位定义的具有灵活的视角和传感器距离/扫描的完整矢量UWB EMI数据的可能性。显示设备的详细信息和结果数据。当人们利用仪器进步所带来的数据多样性优势时,就表明了减少电磁干扰数据反演长期慢性病的潜在优势。某些EMI测量问题无法通过EMI数据多样性解决,因为当在较大的UXO上方的小表面杂波有效地遮盖EMI传感器时。在这种情况下,EMI测量必须由探地雷达(GPR)方法补充或替代。

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