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Real-Time Multiview SAR Imaging Using a Portable Microwave Camera With Arbitrary Movement

机译:使用便携式微波摄像机随心所欲地进行实时多视图SAR成像

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This paper presents the first demonstrator of a portable, multiview, high-resolution, 3-D, and real-time microwave imaging system. The system is based on a recently developed real-time 3-D microwave camera, which performs quasi-monostatic acquisitions, equipped with an optical depth camera, providing target surface profile information. In addition, the entire system can be arbitrarily moved along the target performing microwave and depth camera synchronized acquisitions from different views with a twofold purpose, namely: 1) enabling a coverage area much larger than that possible with a static imaging system and b) allowing for incorporation of several tilt angles (or views) to enhance capturing specular reflection imaging data to improve the overall image quality. At each scanning position, the imaging data from the microwave camera are processed to build a local 3-D microwave image. The information is then merged, using recently proposed techniques for multiview synthetic aperture imaging, to compose the global image. The synchronized optical camera depth acquisitions enable tracking the entire imager movements so that the position and attitude are known. Moreover, the data acquired by the depth camera are also use to build a complementary 3-D outer surface profile model of the target, producing a combined and realistic image of the internal and external geometries of the target. Finally, the performance of the combined system is evaluated using several examples related to hidden contraband covered by clothing (i.e., people screening).
机译:本文介绍了便携式,多视图,高分辨率,3-D和实时微波成像系统的第一个演示器。该系统基于最近开发的实时3-D微波相机,该相机执行准单静态采集,并配备了光学深度相机,可提供目标表面轮廓信息。此外,整个系统可以沿目标任意移动,以实现双重目的从两个不同的角度进行微波和深度相机同步采集,即:1)实现比静态成像系统更大的覆盖范围; b)允许用于合并多个倾斜角(或视图)以增强对镜面反射成像数据的捕获,从而改善整体图像质量。在每个扫描位置,都会处理来自微波摄像机的成像数据,以建立本地3-D微波图像。然后使用最近提出的用于多视图合成孔径成像的技术合并信息,以构成全局图像。同步的光学相机深度获取使跟踪整个成像器的运动成为可能,以便知道位置和姿态。此外,深度相机获取的数据还用于建立目标的互补3-D外表面轮廓模型,从而生成目标内部和外部几何形状的组合且逼真的图像。最后,使用与被衣物遮盖的隐藏违禁品(即人员检查)相关的几个示例来评估组合系统的性能。

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