首页> 外文会议>SPIE Conference on Detection and Sensing of Mines, Explosive Objects, and Obscured Targets >Dynamic EMI Sensor Platform for Digital Geophysical Mapping and Automated Clutter Rejection for CONUS and OCONUS Applications
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Dynamic EMI Sensor Platform for Digital Geophysical Mapping and Automated Clutter Rejection for CONUS and OCONUS Applications

机译:用于数字地球物理测绘的动态EMI传感器平台和康纳斯和遮阳伞应用的自动杂波抑制

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The implementation of new advanced electromagnetic induction (EMI) sensor surveys at sites containing unexploded ordnance (UXO) and explosive remnants of war (ERW) is an effective method for accurate mapping and for discriminating clutter from targets of interest. We present development and integration of a next generation advanced EMI sensor onto a cart-based sensing platform to combine the mapping capability of previous digital geophysical survey instruments with the high-resolution discrimination capability of advanced characterization arrays. The EMI sensor employs a multi-axis receiver configuration to produce data sufficient for anomaly discrimination. We discuss platform design and development, data acquisition and post-processing software development, and results from field tests demonstrating the detection and discrimination capability of the cart-based system. Platform development and design focused on navigation and EMI sensor integration onto a custom, low-noise, metal-free platform. Data acquisition is via an Android application with emphasis on ease-of-use and real-time quality control (QC) of collected data. Post-processing methods emphasize QC, inversion-based anomaly location estimation, and automated or supervised polarizability-based discrimination methods to produce a prioritized dig list. Integration of the detection, clutter rejection and QC methods into the postprocessing software module reduces the time required between sensor data collection and generation of a prioritized dig list. System concept of operations (CONOPs), data collection, QC, data processing procedures, and performance against various clutter objects and targets of interest will also be discussed.
机译:在包含未爆炸的官僚(UXO)和战争爆炸物(ERW)的地点的新的高级电磁感应(EMI)传感器调查是一种有效的方法,用于精确绘图和用于与感兴趣的目标歧视杂波。我们将下一代高级EMI传感器的开发和集成在基于推车的传感平台上,以将先前数字地球物理测量仪器的映射能力与高分辨率判别阵列的高分辨率辨别能力相结合。 EMI传感器采用多轴接收器配置来产生足以用于异常辨别的数据。我们讨论平台设计和开发,数据采集和后处理软件开发,以及现场测试结果,证明了基于购物车的系统的检测和辨别能力。平台开发和设计专注于导航和EMI传感器集成到定制,低噪声,无金属平台上。数据采集​​通过Android应用程序强调收集数据的易用性和实时质量控制(QC)。后处理方法强调QC,基于反转的异常位置估计和基于自动化或监督的基于可极化性的辨别方法来生成优先级的挖掘列表。将检测,杂波拒绝和QC方法集成到后处理软件模块中减少了传感器数据收集和优先级挖掘列表之间所需的时间。系统的操作概念(核心),数据收集,QC,数据处理程序和针对各种杂波对象的性能以及感兴趣的目标。

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