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基于频率扫描天线的低成本三维毫米波全息成像系统。

Low-cost three-dimensional millimeter-wave holographic imaging system based on a frequency-scanning antenna.

作者信息

Amin Nili Vahid, Mansouri Ehsan, Kavehvash Zahra, Fakharzadeh Mohammad, Shabany Mahdi, Khavasi Amin

出版信息

Appl Opt. 2018 Jan 1;57(1):A65-A75. doi: 10.1364/AO.57.000A65.

Abstract

In this paper, a closed-form two-dimensional reconstruction technique for hybrid frequency and mechanical scanning millimeter-wave (MMW) imaging systems is proposed. Although being commercially implemented in many imaging systems as a low-cost real-time solution, the results of frequency scanning systems have been reconstructed numerically or have been reported as the captured raw data with no clear details. Furthermore, this paper proposes a new framework to utilize the captured data of different frequencies for three-dimensional (3D) reconstruction based on novel proposed closed-form relations. The hybrid frequency and mechanical scanning structure, together with the proposed reconstruction method, yields a low-cost MMW imaging system with a satisfying performance. The extracted reconstruction formulations are validated through numerical simulations, which show comparable image quality with conventional MMW imaging systems, i.e., switched-array (SA) and phased-array (PA) structures. Extensive simulations are also performed in the presence of additive noise, demonstrating the acceptable robustness of the system against system noise compared to SA and comparable performance with PA. Finally, 3D reconstruction of the simulated data shows a depth resolution of better than 10 cm with minimum degradation of lateral resolution in the 10 GHz frequency bandwidth.

摘要

本文提出了一种用于混合频率和机械扫描毫米波(MMW)成像系统的闭式二维重建技术。尽管频率扫描系统作为一种低成本的实时解决方案已在许多成像系统中得到商业应用,但其结果一直是通过数值方法重建的,或者只是作为捕获的原始数据进行报告,没有清晰的细节。此外,本文基于新提出的闭式关系,提出了一种利用不同频率捕获数据进行三维(3D)重建的新框架。混合频率和机械扫描结构,以及所提出的重建方法,产生了一种具有令人满意性能的低成本毫米波成像系统。通过数值模拟对提取的重建公式进行了验证,结果表明其图像质量与传统毫米波成像系统(即开关阵列(SA)和相控阵(PA)结构)相当。在存在加性噪声的情况下也进行了广泛的模拟,结果表明与SA相比,该系统对系统噪声具有可接受的鲁棒性,与PA具有相当的性能。最后,对模拟数据的三维重建显示,在10GHz频率带宽内,深度分辨率优于10cm,横向分辨率的下降最小。

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