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首页> 外文期刊>International journal of microwave science and technology >Ultrawideband Noise Radar Imaging of Impenetrable Cylindrical Objects Using Diffraction Tomography
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Ultrawideband Noise Radar Imaging of Impenetrable Cylindrical Objects Using Diffraction Tomography

机译:使用衍射层析成像技术对难以穿透的圆柱体进行超宽带噪声雷达成像

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摘要

Ultrawideband (UWB) waveforms achieve excellent spatial resolution for better characterization of targets in tomographic imaging applications compared to narrowband waveforms. In this paper, two-dimensional tomographic images of multiple scattering objects are successfully obtained using the diffraction tomography approach by transmitting multiple independent and identically distributed (iid)UWBrandomnoise waveforms.Thefeasibility of using a randomnoise waveformfor tomography is investigated by formulating a white Gaussian noise (WGN) model using spectral estimation. The analytical formulation of object image formation using random noise waveforms is established based on the backward scattering, and several numerical diffraction tomography simulations are performed in the spatial frequency domain to validate the analytical results by reconstructing the tomographic images of scattering objects. The final image of the object based on multiple transmitted noise waveforms is reconstructed by averaging individually formed images which compares very well with the image created using the traditional Gaussian pulse. Pixel difference-based measure is used to analyze and estimate the image quality of the final reconstructed tomographic image under various signal-to-noise ratio (SNR) conditions.Also, preliminary experiment setup andmeasurement results are presented to assess the validation of simulation results.
机译:与窄带波形相比,超宽带(UWB)波形具有出色的空间分辨率,可以更好地表征层析成像应用中的目标。本文通过衍射层析成像方法,通过传输多个独立且均匀分布的(iid)UWB随机噪声波形,成功地获得了多个散射物体的二维层析图像。通过将白高斯噪声公式化为白,研究了将随机噪声波形用于层析成像的可行性WGN)模型使用频谱估计。基于后向散射建立了使用随机噪声波形形成物体图像的解析公式,并在空间频域内进行了几种数值衍射层析成像仿真,以通过重建散射物体的层析图像来验证分析结果。通过对单独形成的图像进行平均,可以重建基于多个传输噪声波形的对象最终图像,该图像与使用传统高斯脉冲创建的图像相比非常好。基于像素差异的度量用于在各种信噪比(SNR)条件下分析和估计最终重建断层图像的图像质量。此外,还提供了初步的实验设置和测量结果,以评估仿真结果的有效性。

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