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3D Volumetric Radar Using 94-GHz Millimeter Waves

机译:使用94 GHz毫米波的3D体积雷达

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This article describes a novel approach to the real-time visualization of 3D imagery obtained from a 3D millimeter wave scanning radar. The MMW radar system employs a spinning antenna to generate a fan-shaped scanning pattern of the entire scene. The beams formed this way provide all weather 3D distance measurements (range/azimuth display) of objects as they appear on the ground. The beam width of the antenna and its side lobes are optimized to produce the best possible resolution even at distances of up to 15 Kms. To create a full 3D data set the fan-pattern is tilted up and down with the help of a controlled stepper motor. For our experiments we collected data at 0.1 degrees increments while using both bi-static as well as a mono-static antennas in our arrangement. The data collected formed a stack of range-azimuth images in the shape of a cone. This information is displayed using our high-end 3D visualization engine capable of displaying high-resolution volumetric models with 30 frames per second. The resulting 3D scenes can then be viewed from any angle and subsequently processed to integrate, fuse or match them against real-life sensor imagery or 3D model data stored in a synthetic database.
机译:本文介绍了一种从3D毫米波扫描雷达获得的3D图像实时可视化的新颖方法。 MMW雷达系统采用旋转天线来生成整个场景的扇形扫描图案。这样形成的光束可以提供物体出现在地面上时的所有天气3D距离测量结果(范围/方位角显示)。优化了天线的波束宽度及其旁瓣,即使在最远15 Kms的距离下也能产生最佳分辨率。为了创建完整的3D数据集,在受控步进电机的帮助下,将风扇图案上下倾斜。对于我们的实验,我们以0.1度的增量收集数据,同时在我们的装置中同时使用双静态天线和单静态天线。收集的数据形成了圆锥形的一系列方位角图像。使用我们的高端3D可视化引擎显示此信息,该引擎能够以每秒30帧的速度显示高分辨率的体积模型。然后,可以从任何角度查看生成的3D场景,然后对其进行处理,以将它们与真实传感器图像或合成数据库中存储的3D模型数据进行集成,融合或匹配。

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