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Models and Signal Processing for Millimeter-Wave LFMCW SAR Imaging

机译:毫米波LFMCW SAR成像的模型和信号处理

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In remote sensing applications, there is a special interest in lightweight, cost effective, and high resolution imaging sensors. The combination of linearly frequency modulated continuous wave (LFMCW) technology and synthetic aperture radar (SAR) technique can lead to such a sensor. As such, this paper concentrates on the models and signal processing of millimeter-wave (mmW) LFMCW SAR for high-resolution imaging, which includes two main parts. In the first part, the system models and useful relations for mmW LFMCW SAR imaging are provided, and an image formation algorithm that takes into account the special characteristics of CW (continuous wave) SAR is investi-gated. The second part focuses on the impact of LFMCW waveform errors on SAR imagery. The allowable magnitudes of phase error for each category are quantified, and an effective compensation technique for compensating possible frequency nonlinearity errors in LFMCW signals is presented. Thus the novel combination of mmW LFMCW and SAR can pave the way for the development of a small, lightweight, and high resolution imaging sensor.
机译:在遥感应用中,对轻质,经济高效和高分辨率成像传感器的特殊兴趣。线性频率调制的连续波(LFMCW)技术和合成孔径雷达(SAR)技术的组合可以导致这种传感器。因此,本文专注于毫米波(MMW)LFMCW SAR的模型和信号处理,用于高分辨率成像,包括两个主要部件。在第一部分中,提供了系统模型和MMW LFMCW SAR成像的有用关系,以及考虑CW(连续波)SAR的特性的图像形成算法是投资所设计的。第二部分侧重于LFMCW波形错误对SAR图像的影响。量化了每个类别的相位误差的允许大小,并且呈现了用于补偿LFMCW信号中可能的频率非线性误差的有效补偿技术。因此,MMW LFMCW和SAR的新颖组合可以为开发小,轻质和高分辨率和高分辨率的成像传感器铺平道路。

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