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Detection of Vehicle-Based Improvised Explosives Using Ultra-Trace Detection Equipment

机译:使用超痕量检测设备检测车辆用简易爆炸物

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Vehicle-borne improvised explosive devices (VBIEDs) have become the weapon of choice for insurgents in Iraq. At the same time, these devices are becoming increasingly sophisticated and effective. VBIEDs can be difficult to detect during visual inspection of vehicles. This is especially true when explosives have been hidden behind a vehicle's panels, inside seat cushions, under floorboards, or behind cargo. Even though the explosive may not be visible, vapors of explosive emanating from the device are often present in the vehicle, but the current generation of trace detection equipment has not been sensitive enough to detect these low concentrations of vapor. This paper presents initial test results using the Nomadics Fido sensor for detection of VBIEDs. The sensor is a small, explosives detector with unprecedented levels of sensitivity for detection of nitroaromatic explosives. Fido utilizes fluorescence quenching of novel polymer materials to detect traces of explosive vapor emanating from targets containing explosives. These materials, developed by collaborators at the Massachusetts Institute of Technology (MIT), amplify the quenching response that occurs when molecules of explosive bind to films of the polymer. These materials have enabled development of sensors with performance approaching that of canines trained to detect explosives. The ability of the sensor to detect explosives in vehicles and on persons who have recently been in close proximity to explosives has recently been demonstrated. In these tests, simulated targets were quickly and easily detected using a Fido sensor in conjunction with both direct vapor and swipe sampling methods. The results of these tests suggest that chemical vapor sensing has utility as a means of screening vehicles for explosives at checkpoints and on patrols.
机译:车载简易爆炸装置(VBIED)已成为伊拉克叛乱分子的首选武器。同时,这些设备变得越来越复杂和有效。在车辆的目视检查过程中,很难检测到VBIED。当炸药被藏在车辆面板后面,座垫内部,地板下面或货物后面时,尤其如此。即使可能看不到炸药,从设备散发出来的炸药蒸汽也经常出现在车辆中,但是当前的痕量检测设备不够灵敏,无法检测到这些低浓度的蒸汽。本文介绍了使用Nomadics Fido传感器检测VBIED的初始测试结果。该传感器是一种小型爆炸物检测器,对硝基芳香族爆炸物的检测具有前所未有的灵敏度。 Fido利用新型聚合物材料的荧光猝灭来检测从含有炸药的目标发出的炸药蒸气的痕迹。这些材料由麻省理工学院(MIT)的合作者开发,可放大当炸药分子结合到聚合物薄膜上时发生的猝灭反应。这些材料使传感器的性能达到了经过训练可探测爆炸物的犬的性能。最近已经证明了传感器检测车辆中和最近与爆炸物非常接近的人身上的爆炸物的能力。在这些测试中,使用Fido传感器结合直接蒸气法和滑动采样法可以快速,轻松地检测到模拟目标。这些测试的结果表明,化学蒸气感测可作为检查车辆在检查站和巡逻中爆炸物的工具。

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