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A High-Resolution 220-GHz Ultra-Wideband Fully Integrated ISAR Imaging System

机译:高分辨率220 GHz超宽带全集成ISAR成像系统

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In this paper, an ultra-wideband fully integrated imaging radar at sub-terahertz (sub-THz) frequencies is presented, which demonstrates a fine lateral resolution without using any focal lens/mirror. We have achieved a lateral resolution of 2 mm for an object at 23-cm distance as well as a range resolution of 2.7 mm. To achieve the decent range resolution, in a frequency modulation continuous wave radar configuration, a state-of-the-art chirp bandwidth (BW) of 62.4 GHz at a center frequency of 221.1 GHz is generated and efficiently radiated. We have presented a design technique for the optimal design of the passive embedding around the core transistor to maximize the tuning BW of the voltage controlled oscillator. At the receiver side, to maximize the intermediate frequency level, a subharmonic mixer is utilized, which is designed for the lowest conversion loss. Finally, to obtain the fine lateral resolution, we have implemented near-field beamforming algorithm based on the inverse synthetic aperture radar (ISAR) systems. The synthesized beamwidth is less than 0.5 degrees; hence, high-resolution images are reconstructed. The system is fabricated in a 55-nm BiCMOS process. To the best of our knowledge, this is the first imaging radar at THz/sub-THz frequencies, which utilizes ISAR to achieve a high lateral resolution while the radar system is fully integrated.
机译:在本文中,提出了一种在兆兆赫兹(sub-THz)频率下的超宽带全集成成像雷达,该雷达在不使用任何聚焦透镜/反射镜的情况下显示出良好的横向分辨率。对于23厘米距离的物体,我们已经实现了2毫米的横向分辨率,以及2.7毫米的范围分辨率。为了达到合适的距离分辨率,在调频连续波雷达配置中,产生了中心频率为221.1 GHz的最先进的线性调频带宽(BW)为62.4 GHz。我们提出了一种设计技术,用于对核心晶体管周围的无源嵌入进行最佳设计,以最大化压控振荡器的调谐带宽。在接收器端,为了使中频水平最大化,使用了次谐波混频器,其设计目的是实现最低的转换损耗。最后,为了获得良好的横向分辨率,我们基于反合成孔径雷达(ISAR)系统实现了近场波束形成算法。合成波束宽度小于0.5度;因此,可以重建高分辨率图像。该系统采用55纳米BiCMOS工艺制造。据我们所知,这是第一台以THz / sub-THz频率成像的成像雷达,它在雷达系统完全集成的同时,利用ISAR实现了高横向分辨率。

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