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Signal Processing for a Multiple-Input, Multiple-Output (MIMO) Video Synthetic Aperture Radar (SAR) with Beat Frequency Division Frequency-Modulated Continuous Wave (FMCW)

机译:具有拍频分频调频连续波(FMCW)的多输入多输出(MIMO)视频合成孔径雷达(SAR)的信号处理

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In this paper, we present a novel signal processing method for video synthetic aperture radar (ViSAR) systems, which are suitable for operation in unmanned aerial vehicle (UAV) environments. The technique improves aspects of the system’s performance, such as the frame rate and image size of the synthetic aperture radar (SAR) video. The new ViSAR system is based on a frequency-modulated continuous wave (FMCW) SAR structure that is combined with multiple-input multiple-output (MIMO) technology, and multi-channel azimuth processing techniques. FMCW technology is advantageous for use in low cost, small size, and lightweight systems, like small UAVs. MIMO technology is utilized for increasing the equivalent number of receiving channels in the azimuthal direction, and reducing aperture size. This effective increase is achieved using a co-array concept by means of beat frequency division (BFD) FMCW. A multi-channel azimuth processing technique is used for improving the frame rate and image size of SAR video, by suppressing the azimuth ambiguities in the receiving channels. This paper also provides analyses of the frame rate and image size of SAR video of ViSAR systems. The performance of the proposed system is evaluated using an exemplary system. The results of analyses are presented, and their validity is verified using numerical simulations.
机译:在本文中,我们提出了一种适用于视频合成孔径雷达(ViSAR)系统的新型信号处理方法,该方法适合在无人机(UAV)环境中运行。该技术改善了系统性能的各个方面,例如合成孔径雷达(SAR)视频的帧频和图像大小。新的ViSAR系统基于调频连续波(FMCW)SAR结构,该结构结合了多输入多输出(MIMO)技术和多通道方位角处理技术。 FMCW技术在低成本,小尺寸和轻型系统(如小型UAV)中使用非常有利。 MIMO技术用于增加方位角方向上的等效接收信道数量,并减小孔径大小。使用拍频分频(BFD)FMCW,使用共阵列概念可以实现这种有效的提高。多通道方位角处理技术用于通过抑制接收通道中的方位角模糊度来提高SAR视频的帧速率和图像大小。本文还对ViSAR系统的SAR视频的帧速率和图像大小进行了分析。所提出的系统的性能使用示例性系统来评估。介绍了分析结果,并使用数值模拟验证了其有效性。

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