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稀疏阵列毫米波成像仪配置的性能比较

Performance comparison of sparse array millimeter wave imager configurations.

作者信息

Mohammadian Nafiseh, Furxhi Orges, Short Robert, Driggers Ronald

出版信息

Opt Express. 2019 Jul 8;27(14):19292-19308. doi: 10.1364/OE.27.019292.

Abstract

Millimeter wave imaging systems are a promising candidate for several applications such as indoor security, industrial non-destructive evaluation, and automotive radar systems. In this paper, we compare the performance of various array configurations that can be enabled by recent automotive radar chips, for imaging applications. High resolution real-time imaging requires an extensive number of measurements which demands a large number of emitters and receivers. Hence, cost and size become major considerations in the design process. In an attempt to reduce the number of emitter and receiver elements, we compare various antenna array architectures to optimize the hardware implementation for high resolution imaging. We consider mono-static single-input-single-output (SISO), multi-static multiple-input-multiple-output (Full-MIMO), and hybrid localized MIMO-SISO (Local-MIMO) architectures. The computationally reconstructed image quality and point spread function from each architecture are compared and traded for the system engineering complexity and cost. We present measurement results from a Synthetic Aperture Radar (SAR) system based on an automotive radar sensor to ensure it is representative of the system's physics. The comparative results of the SISO, Full-MIMO and Local-MIMO simulations provide for affordable alternatives to the high cost SISO approach.

摘要

毫米波成像系统是多种应用的一个有前景的候选方案,如室内安全、工业无损检测和汽车雷达系统。在本文中,我们比较了近期汽车雷达芯片能够实现的各种阵列配置在成像应用方面的性能。高分辨率实时成像需要大量测量,这就需要大量的发射器和接收器。因此,成本和尺寸成为设计过程中的主要考虑因素。为了减少发射器和接收器元件的数量,我们比较了各种天线阵列架构,以优化高分辨率成像的硬件实现。我们考虑了单静态单输入单输出(SISO)、多静态多输入多输出(全MIMO)以及混合局部MIMO - SISO(局部MIMO)架构。比较了每种架构经计算重建后的图像质量和点扩散函数,并权衡了系统工程的复杂性和成本。我们展示了基于汽车雷达传感器的合成孔径雷达(SAR)系统的测量结果,以确保其代表了系统的物理特性。SISO、全MIMO和局部MIMO模拟的比较结果为高成本的SISO方法提供了经济实惠的替代方案。

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