首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Toward 4-D Imaging of On-the-Move Object at 2500 Volumetric Frames per Second by Software-Defined Millimeter-Wave MIMO With Compressive Reflector Antenna
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Toward 4-D Imaging of On-the-Move Object at 2500 Volumetric Frames per Second by Software-Defined Millimeter-Wave MIMO With Compressive Reflector Antenna

机译:通过带有压缩反射器天线的软件定义的毫米波 MIMO,以每秒 2500 帧的速度对移动物体进行 4D 成像

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摘要

Conventional millimeter-wave (mm-wave) security screening systems with synthetic or phased arrays require either mechanical or electronic scans which are slow, thus not capable to image on-the-move objects. This article presents the 4-D imaging of on-the-move objects (1-D velocity and 3-D profile) by leveraging cost-effective compressive reflector antennas (CRAs) and software-defined mm-wave (SDMMW) multiple-in multiple-out (MIMO) arrays. The CRA creates spatial aperture coding to achieve informative measurements and high sensing capacity. The SDMMW MIMO array generates fast space-time-coded frequency-modulated continuous wave (FMCW) for quick data collection and simultaneous MIMO operation. The signal model using the CRAs fed by the SDMMW MIMO arrays in a multistatic configuration is derived, followed by the sensing-matrix-based imaging theory. Then, a proof-of-concept imaging system is designed with a made-in-lab CRA and a modularized 8-by-8 SDMMW array where the fast FMCW modulation achieves a linearized frequency sweep of 5.02 GHz per 50 ${mu }text{s}$ , corresponding to a high data acquisition rate of 2500 volumetric frames/s and an unambiguous velocity of #x00B1;2.23 m/s. Both simulations and experiments have shown good imaging performance of on-the-move objects, giving great potential for developing future cost-effective high-throughput mm-wave security screening systems.
机译:传统的毫米波(mm-wave)安检系统采用合成或相控阵,需要机械或电子扫描,这些扫描速度较慢,因此无法对移动中的物体进行成像。本文介绍了利用经济高效的压缩反射天线 (CRA) 和软件定义毫米波 (SDMMW) 多进多出 (MIMO) 阵列对移动物体(1-D 速度和 3-D 轮廓)进行 4D 成像。CRA 创建空间孔径编码,以实现信息丰富的测量和高传感能力。SDMMW MIMO 阵列可生成快速空时编码调频连续波 (FMCW),用于快速数据收集和同步 MIMO 操作。推导了SDMMW MIMO阵列在多基地配置下馈送的CRA信号模型,并提出了基于传感矩阵的成像理论。然后,利用实验室制造的CRA和模块化的8×8 SDMMW阵列设计了一个概念验证成像系统,其中快速FMCW调制实现了每50 ${mu }text{s}$ 5.02 GHz的线性化频率扫描,对应于2500体积帧/s的高数据采集速率和±2.23 m/s的明确速度。仿真和实验都表明,移动物体具有良好的成像性能,为开发未来具有成本效益的高通量毫米波安检系统提供了巨大的潜力。

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