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Performance Metrics for State-of-the-Art Airborne Magnetic and Electromagnetic Systems for Mapping and Detection of Unexploded Ordnance

机译:先进的机载电磁系统对未爆炸弹药进行制图和检测的性能指标

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Over the past decade, notable progress has been made in the performance of airborne geophysical systems for mapping and detection of unexploded ordnance in terrestrial and shallow marine environments. For magnetometer systems, the most significant improvements include development of denser magnetometer arrays and vertical gradiometer configurations. In prototype analyses and recent Environmental Security Technology Certification Program (ESTCP) assessments using new production systems the greatest sensitivity has been achieved with a vertical gradiometer configuration, despite model-based survey design results which suggest that dense total-field arrays would be superior.rnAs effective as magnetometer systems have proven to be at many sites, they are inadequate at sites where basalts and other ferrous geologic formations or soils produce anomalies that approach or exceed those of target ordnance items. Additionally, magnetometer systems are ineffective where detection of non-ferrous ordnance items is of primary concern. Recent completion of the Battelle TEM-8 airborne time-domain electromagnetic system represents the culmination of nearly nine years of assessment and development of airborne electromagnetic systems for UXO mapping and detection. A recent ESTCP demonstration of this system in New Mexico showed that it was able to detect 99% of blind-seeded ordnance items, 81mm and larger, and that it could be used to map in detail a bombing target on a basalt flow where previous airborne magnetometer surveys had failed. The probability of detection for the TEM-8 in the blind-seeded study area was better than that reported for a dense-array total-field magnetometer demonstration of the same blind-seeded site, and the TEM-8 system successfully detected these items with less than half as many anomaly picks as the dense-array total-field magnetometer system.rnOverall, improvements in airborne geophysical systems over the past ten years have led to the capability of detecting smaller ordnance with fewer false positives. These trends should continue as more technological advances are made.
机译:在过去的十年中,机载地球物理系统在测绘和探测陆地和浅海环境中未爆炸弹药的性能方面取得了显着进展。对于磁力计系统,最显着的改进包括开发了更密集的磁力计阵列和垂直梯度计配置。尽管基于模型的调查设计结果表明密集的全场阵列将是更好的选择,但在原型分析和最新的使用新生产系统的环境安全技术认证计划(ESTCP)评估中,使用垂直梯度仪配置仍可实现最大的灵敏度。由于磁力计系统已在许多地点被证明是有效的,因此在玄武岩和其他铁质地质构造或土壤产生的异常接近或超过目标军械项目的异常的地点,它们是不够的。另外,在主要关注有色军械项目的检测中,磁力计系统无效。 Battelle TEM-8机载时域电磁系统的最新完成代表了近九年来评估和开发用于UXO测绘和检测的机载电磁系统的高潮。 ESTCP最近在新墨西哥州对该系统进行的演示表明,它能够检测到99%的81mm及更大的盲目弹药,并且可用于详细绘制炸弹目标在先前机载的玄武岩流上的位置磁力计调查失败。在盲区研究区中检测到TEM-8的概率要比在同一盲区中的密集阵列全场磁力计演示所报告的概率要好,而TEM-8系统成功地检测到了这些项目。总的来说,过去十年来机载地球物理系统的改进已导致能够以更少的误报检测较小的弹药。随着更多的技术进步,这些趋势应继续下去。

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