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Minefield edge detection using a novel chemical vapor sensing technique

机译:利用新型化学蒸汽传感技术进行雷区边缘检测

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Nomadics has developed a novel sensing technology that detects the chemical signature of explosives emanating from buried landmines. Canines have demonstrated the ability to detect these signatures, but use of canines for this task presents a number of logistical and physical limitations that can be overcome by use of chemical sensors. Nomadics is the exclusive licensee of novel amplifying fluorescent polymer materials developed by the Massachusetts Institute of Technology (MIT). These materials enable detection of ultra-trace concentrations of nitroaromatic compounds such as TNT, the most commonly utilized explosive in the production of landmines. When vapors of nitroaromatics are presented to the sensor, the fluorescent polymers emit light at a greatly reduced intensity, a property that enables rapid detection of trace quantities of explosives using relatively low-cost electronics and optics. Studies performed by Jenkins et al suggest that the chemical signature of a landmine is heterogeneous and can be dispersed a significant distance from the location of the mine. Because the signature is not highly localized and is not characterized by a well-defined concentration gradient, the sensor may have difficulty indicating the exact position of a mine, especially in high-density minefields. Conversely, if the chemical signature extends some distance from the mine position, the sensor may have utility in detecting the edges of minefields. In combat scenarios, this will allow commanders to select safe paths for personnel and vehicles. This paper will present the latest findings related to minefield edge detection at several test sites.
机译:Nomadics已经开发了一种新型传感技术,检测从埋地雷爆炸所产生的化学签名。犬已经证明,以检测这些签名,而是用犬的这项任务提出了一些可以通过使用化学传感器来克服后勤和物理限制的能力。 Nomadics是由麻省理工学院(MIT)开发的新型放大荧光聚合物材料的专用特许。这些材料使例如TNT,在生产地雷的最常用的爆炸物硝基芳香化合物的超痕量浓度的检测。当硝基芳烃的蒸气被呈现给传感器,荧光聚合物以大大降低的强度,使得能够使用相对低成本的电子器件和光学器件的炸药微量的快速检测的特性发出光。由Jenkins等进行的研究表明,地雷的化学签名是异质的,并且可以从矿井的位置被分散一个显著距离。因为签名不是高度局部化,而不是特征在于明确定义的浓度梯度,该传感器可以具有指示矿的精确位置,特别是在高密度雷区困难。相反,如果化学签名延伸从矿井位置一段距离,所述传感器可以具有在检测雷区的边缘效用。在战斗场景中,这将允许指挥官选择人员和车辆的安全路径。本文将介绍几个考点涉及到雷区边缘检测的最新研究成果。

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