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Human Target Enhancement Based on Radon Fourier Transform in Through-Wall Imaging Radar

机译:穿墙成像雷达中基于Radon Fourier变换的人体目标增强

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Through-wall imaging radar (TWIR) usually transmits ultra-wideband (UWB) signals to obtain high-range resolution and penetrate walls to image the concealed human targets. Because of the round-trip high attenuation of walls and low reflectivity of human target, the received human target echoes are extremely weak, and consequently it is necessary to enhance the human target echoes and improve the low signal-to-noise ratio (SNR) before image formation. However, directly applying the conventional moving target detection (MTD) is faced with the range migration issue due to the high-range resolution of UWB TWIR. In this paper, we introduce the radon-Fourier transform (RFT) into the UWB TWIR to enhance the human target echo in the velocity domain, which can overcome the range migration. Simulation results show that noise can be effectively suppressed and target echoes can be significantly enhanced.
机译:穿墙成像雷达(TWIR)通常发送超宽带(UWB)信号以获得高范围分辨率,并穿透墙壁以对隐藏的人类目标成像。由于墙壁的往返高衰减和人类目标的低反射率,接收到的人类目标回波非常微弱,因此有必要增强人类目标回波并改善低信噪比(SNR)成像之前。然而,由于UWB TWIR的高分辨率,直接应用传统的移动目标检测(MTD)面临着距离迁移的问题。在本文中,我们将the-傅立叶变换(RFT)引入到UWB TWIR中,以在速度域中增强人类目标回波,从而可以克服距离偏移。仿真结果表明,可以有效地抑制噪声,并且可以显着增强目标回波。

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