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Enhancing Microwave Metamaterial Aperture Radar Imaging Performance With Rotation Synthesis

机译:旋转合成增强微波超材料孔径雷达成像性能

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摘要

Microwave metamaterial aperture imaging radar (MMAIR) is a new radar system, which is capable of generating forward-looking image without using mechanical scanning or antenna arrays. In MMAIR, metamaterial elements are specifically embedded into a top plate of a parallel plate waveguide, whose resonance frequencies vary among a wide frequency bandwidth. Different MMAIR radiation fields can be motivated by a wide-band waveform, and the forward-looking image is reconstructed with the measurements excited by a set of frequency radiation modes. According to the compressed sensing (CS) theory, the imaging performance of an MMAIR system is restricted by the diversity of the frequency-agility radiation modes. In general, abundant radiation modes are difficult to achieve and require special design of the metamaterial aperture and waveform of extremely wide frequency bandwidth. In this paper, we propose a rotation-synthesis approach to enhance the diversity of the radiation modes without the increase of the system complexity. By rotating the metamaterial aperture panel around the panel axis, the approach exploits the pseudo-randomness characteristics of the MMAIR radiation field. The rotation motion is capable of dramatically improving the abundance of the MMAIR measurements at a price of consuming more measurement time. As a result, the image performance of MMAIR using the CS reconstruction optimization can be crucially enhanced. Extensive simulations verify the effectiveness of the proposed approach.
机译:微波超材料孔径成像雷达(MMAIR)是一种新型雷达系统,能够在不使用机械扫描或天线阵列的情况下生成前瞻性图像。在MMAIR中,特异材料元素专门嵌入平行板波导的顶板中,其谐振频率在很宽的频率带宽内变化。宽带波形可以激发不同的MMAIR辐射场,并且通过一组频率辐射模式激发的测量结果重建前视图像。根据压缩传感(CS)理论,MMAIR系统的成像性能受到频率捷变辐射模式多样性的限制。通常,很难实现丰富的辐射模式,并且需要特殊设计超材料孔径和极宽的频率带宽的波形。在本文中,我们提出了一种旋转合成方法,以在不增加系统复杂性的情况下增强辐射模式的多样性。通过围绕面板轴旋转超材料孔径面板,该方法利用了MMAIR辐射场的伪随机特性。旋转运动能够以消耗更多测量时间的代价极大地提高MMAIR测量的丰度。结果,可以显着提高使用CS重建优化的MMAIR的图像性能。大量的仿真验证了该方法的有效性。

著录项

  • 来源
    《Sensors Journal, IEEE》 |2016年第22期|8035-8043|共9页
  • 作者单位

    National Laboratory of Radar Signal Processing, Collaborative Innovation Center of Information Sensing and Understanding, Xidian University, Xi’an, China;

    National Laboratory of Radar Signal Processing, Collaborative Innovation Center of Information Sensing and Understanding, Xidian University, Xi’an, China;

    National Laboratory of Radar Signal Processing, Collaborative Innovation Center of Information Sensing and Understanding, Xidian University, Xi’an, China;

    School of Electronic Engineering, Xidian University, Xi’an, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metamaterials; Radar imaging; Imaging; Apertures; Magnetic materials; Frequency measurement;

    机译:超材料;雷达成像;成像;孔径;磁性材料;频率测量;

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