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Translation compensation and micro-Doppler extraction for precession ballistic targets with a wideband terahertz radar

机译:宽带太赫兹雷达进动弹道目标的平移补偿和微多普勒提取

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013009.1-013009.6%Imaging, classification, and recognition techniques of ballistic targets in midcourse have always been the focus of research in the radar field for military applications. However, the high velocity translation of ballistic targets will subject range profile and Doppler to translation, slope, and fold, which are especially severe in the terahertz region. Therefore, a two-step translation compensation method based on envelope alignment is presented. The rough compensation is based on the traditional envelope alignment algorithm in inverse synthetic aperture radar imaging, and the fine compensation is supported by distance fitting. Then, a wideband imaging radar system with a carrier frequency of 0.32 THz is introduced, and an experiment on a precession missile model is carried out. After translation compensation with the method proposed in this paper, the range profile and the micro-Doppler distributions unaffected by translation are obtained, providing an important foundation for the high-resolution imaging and micro-Doppler extraction of the terahertz radar. (c) 2018 SPIE and IS&T
机译:013009.1-013009.6%在中途,弹道目标的成像,分类和识别技术一直是军事领域雷达领域研究的重点。但是,弹道目标的高速平移会使射程轮廓和多普勒受到平移,倾斜和折叠的影响,这在太赫兹地区尤其严重。因此,提出了一种基于包络对齐的两步平移补偿方法。粗补偿基于逆合成孔径雷达成像中的传统包络对准算法,精细补偿由距离拟合支持。然后,介绍了一种载频为0.32 THz的宽带成像雷达系统,并进行了进动导弹模型的实验。通过本文提出的方法进行平移补偿,得到了不受平移影响的距离剖面和微多普勒分布,为太赫兹雷达的高分辨率成像和微多普勒提取提供了重要的基础。 (c)2018 SPIE和IS&T

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