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Concealed explosive detection on personnel using a wideband holographic millimeter-wave imaging system

机译:使用宽带全息毫米波成像系统对人员进行隐蔽爆炸物检测

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Abstract: A novel wideband millimeter-wave imaging system is presently being developed at Pacific Northwest National Laboratory (PNNL) that will allow rapid inspection of personnel for concealed explosives, handguns, or other threats. Millimeter-wavelength electromagnetic waves are effective for this application since they readily penetrate common clothing materials, while being partially reflected from the person under surveillance as well as any concealed items. To form an image rapidly, a linear array of 128 antennas is used to electronically scan over a horizontal aperture of 0.75 meters, while the linear array is mechanically swept over a vertical aperture of 2 meters. At each point over this 2-D aperture, coherent wideband data reflected from the target is gathered using wide-beamwidth antennas. The data is recorded coherently, and reconstructed (focused) using an efficient image reconstruction algorithm developed at PNNL. This algorithm works in the near-field of both the target and the scanned aperture and preserves the diffraction limited resolution of less than one-wavelength. The wide frequency bandwidth is used to provide depth resolution, which allows the image to be fully focused over a wide range of depths, resulting in a full 3-D image. This is not possible in a normal optical (or quasi-optical) imaging system. This system has been extensively tested using concealed metal and plastic weapons, and has recently been tested using real plastic explosives (C-4 and RDX) and simulated liquid explosives concealed on personnel. Millimeter-waves do not penetrate the human body, so it is necessary to view the subject from several angles in order to fully inspect for concealed weapons. Full animations containing 36 - 72 frames recorded from subjects rotated by 5 - 10 degrees, have been found to be extremely useful for rapid, effective inspection of personnel. !11
机译:摘要:太平洋西北国家实验室(PNNL)目前正在开发一种新颖的宽带毫米波成像系统,该系统可以对人员进行快速检查,以检查是否存在隐藏的爆炸物,手枪或其他威胁。毫米波电磁波对这种应用很有效,因为它们很容易穿透普通的衣服材料,同时又从被监视人员以及任何隐藏物品中部分反射出来。为了快速形成图像,使用128个天线的线性阵列在0.75米的水平孔径上进行电子扫描,而将线性阵列机械扫过2米的垂直孔径。在此2-D孔径上的每个点,都使用宽波束宽度天线收集从目标反射的相干宽带数据。数据被连贯地记录,并使用在PNNL开发的有效图像重建算法进行重建(聚焦)。该算法可在目标物和扫描孔径的近场中工作,并保留小于一个波长的衍射极限分辨率。宽频率带宽用于提供深度分辨率,从而使图像可以在很宽的深度范围内完全聚焦,从而生成完整的3D图像。在普通的光学(或准光学)成像系统中,这是不可能的。该系统已使用隐蔽的金属和塑料武器进行了广泛的测试,最近已使用真实的塑料炸药(C-4和RDX)和隐藏在人员身上的模拟液体炸药进行了测试。毫米波不会穿透人体,因此有必要从多个角度观察对象,以便充分检查隐藏的武器。已经发现,完整的动画包含以5-10度旋转的对象录制的36-72帧动画,对于快速,有效地检查人员非常有用。 !11

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