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THz Radar Security Screening Method for Walking Human Torso With Multi-Angle Synthetic Aperture

机译:用多角度合成孔径行走人躯干的雷达安全筛选方法

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摘要

Terahertz (THz) radar imaging has widely adopted for security screening of standoff human body in recent years, owing to its capacities of high resolution, harmless, contactless, and penetrate clothing. However, THz radar security screening for walking human is still a challenge due to the non-rigid motion of walking. To figure it out, a THz radar security screening method for walking human torso is proposed with multi-angle synthetic aperture. In this method, the echo data of walking human torso component is assumed as a rigid motion model within a short time. Particularly, the torso component has the maximum ratio of surface area and echo energy, which means that its motion phase error can be detected after fractional Fourier transform processing. Besides, after the correction and imaging processing, the imaging results under different angles are fused by coherent integration with registration processing to improve the integrity of scattering information, which is incomplete within a short aperture due to self-occlusion and the changes in incident angles. The simulation experiments are conducted to verify the imaging quality and feasibility of the proposed method. Moreover, the real small aperture echo data of moving torso collected by our THz radar (that operates at 330GHz with the bandwidth of 30GHz and the output peak power of 5mW) is processed via the proposed method to indicate the significance of multi-angle imaging.
机译:Terahertz(Thz)雷达成像近年来广泛采用了近年来的立场人体的安全筛查,由于其高分辨率,无害,非接触和渗透衣物的能力。然而,由于行走的非刚性运动,步行人类的雷达安全筛查仍然是一个挑战。为了解决方案,提出了一种用于行走人躯干的THz雷达安全筛选方法。在该方法中,在短时间内假设行走人躯干部件的回波数据作为刚性运动模型。特别地,躯干部件具有表面积和回波能量的最大比率,这意味着在分数傅里叶变换处理之后可以检测其运动相位误差。此外,在校正和成像处理之后,在不同角度下通过与登记处理相干集成来融合,以提高散射信息的完整性,这在短孔径内不完全不完整,由于自闭锁和入射角的变化。进行仿真实验以验证所提出的方法的成像质量和可行性。此外,通过所提出的方法处理由我们的THz雷达收集的移动躯干移动躯干的实际小孔径回波数据(以330GHz在30GHz的带宽和5MW的输出峰值功率下操作)来指示多角度成像的意义。

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