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Advanced Buried Object Detection by Multichannel, UAV/Drone Carried Synthetic Aperture Radar

机译:通过多通道,无人机/无人机携带的合成孔径雷达进行高级掩埋物体检测

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The great innovations of Synthetic Aperture Radar (SAR) technology during the past years stimulated new applications in several areas. While in the past SAR was primarily operated for airborne and spaceborne applications, novel operations for quite low altitude like surveillance of cities, local agricultural applications, or even buried object detection, are of new interest. For such operations the well-known and established SAR system concepts should apply similarly, while the technology has to be transferred to the state of the art and new platforms like unmanned aerial vehicles (UAVs) or drones. The paper addresses the special concept for a SAR to detect buried mines. It combines a novel DLR approach based on multistatic observation with the capability to create nearly arbitrary azimuth sampling trajectories. By providing very high resolution it is possible to even identify man-made objects like landmines in the SAR image by their spatial radar-cross section (RCS) distribution. These capabilities allow advanced detection capabilities and satisfy the ultimate demand for buried object identification, both being great improvement in landmine detection and related activities. Beside this concept the paper addresses an idea on robust high-precision positioning, which is indispensable for a successful SAR system. It is based on a photogrammetric method providing the trajectory, the orientation of the UAV and the three-dimensional (3D) ground surface as a side effect as well. Measurement results are shown confirming the feasibility of the proposed approach.
机译:过去几年中,合成孔径雷达(SAR)技术的重大创新激发了在多个领域的新应用。过去,SAR主要用于机载和太空应用,而对于低空高度的新颖操作(例如城市监视,本地农业应用甚至掩埋物体检测)引起了新的兴趣。对于此类操作,应类似地应用众所周知的既定SAR系统概念,同时必须将技术转移到最新技术和新平台上,例如无人飞行器(UAV)或无人机。本文提出了SAR探测埋藏地雷的特殊概念。它结合了一种基于多静态观测的新颖DLR方法,并具有创建几乎任意方位角采样轨迹的能力。通过提供非常高的分辨率,甚至可以通过其空间雷达横截面(RCS)分布来识别SAR图像中的人造物体,例如地雷。这些功能提供了先进的检测功能,并满足了对掩埋物体识别的最终需求,这在地雷检测和相关活动方面均取得了很大的进步。除此概念外,本文还提出了关于鲁棒高精度定位的想法,这对于成功的SAR系统是必不可少的。它基于摄影测量方法,还提供了轨迹,UAV的方向和三维(3D)地面作为副作用。显示了测量结果,证实了该方法的可行性。

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