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Experimental Research on Interferometric Inverse Synthetic Aperture Radar Imaging with Multi-Channel Terahertz Radar System

机译:多通道太赫兹雷达系统干涉合成逆孔径雷达成像实验研究

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摘要

The all solid-state terahertz (THz) radar has obvious miniaturized integration and high resolution imaging advantages compared with conventional microwave radar. In this paper, a 0.22 THz active frequency-modulated pulse radar system with one transmission channel and four receiving channels is presented, and interferometric inverse synthetic aperture radar (InISAR) imaging experiments, which can acquire altitude information of objects, are carried out. In order to acquire high-quality InISAR images, a calibration method is presented to solve the nonlinearity of wideband signal frequency and phase inconsistency of different receiving channels together. Furthermore, to deal with the phase wrapping in InISAR imaging of objects with large scale, a novel method based on the dominant scatterers to estimate the objects rotation rate is presented. Finally, to show more information of objects in the InISAR images, the imaging results with a large rotation angle by the convolutional back-projection algorithm are obtained. The imaging results verify the superior performance of the multi-channel THz radar system and the imaging processing method, which can provide support for further research on InISAR imaging in the THz band.
机译:与传统微波雷达相比,全固态太赫兹(THz)雷达具有明显的小型化集成和高分辨率的成像优势。本文提出了一种具有一个发射通道和四个接收通道的0.22 THz有源调频脉冲雷达系统,并进行了可获取物体高度信息的干涉式反合成孔径雷达成像实验。为了获取高质量的InISAR图像,提出了一种校准方法来解决宽带信号频率的非线性和不同接收通道的相位不一致问题。此外,针对大规模的目标物InISAR成像中的相位包裹问题,提出了一种基于优势散射体估计目标物旋转速率的新方法。最后,为了显示InISAR图像中更多的物体信息,通过卷积反投影算法获得了旋转角度较大的成像结果。成像结果验证了多通道太赫兹雷达系统的优越性能和成像处理方法,可为进一步研究太赫兹波段的InISAR成像提供支持。

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