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Orthogonal discrete frequency-coding waveform design based on modified genetic algorithm for MIMO-SAR

机译:基于改进遗传算法的MIMO-SAR正交离散频率编码波形设计

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A multi-input multi-output (MIMO) radar can be used to form a synthetic aperture for high resolution imaging. To successfully utilize the MIMO synthetic aperture radar (SAR) system for practical imaging application, the orthogonal waveform design plays a critical role in image formation. Focusing on the SAR application, a definition for synthetic integrated side-lobe level ratio (ISLR) is proposed. In this paper a cost function containing ISLR and peak side-lobe level ratio (PSLR) is presented. A modified genetic algorithm (GA) is proposed to numerically search optimal frequency firing order for discrete frequency-coding waveform (DFCW). Some of the designed results are presented. The obtained waveform can be implemented for MIMO-SAR systems to improve the image contrast.
机译:多输入多输出(MIMO)雷达可用于形成用于高分辨率成像的合成孔径。为了成功地将MIMO合成孔径雷达(SAR)系统用于实际成像应用,正交波形设计在图像形成中起着至关重要的作用。重点针对SAR应用,提出了合成综合旁瓣电平比(ISLR)的定义。本文提出了一种包含ISLR和峰值旁瓣电平比(PSLR)的成本函数。提出了一种改进的遗传算法(GA),以数字方式搜索离散频率编码波形(DFCW)的最佳频率触发顺序。介绍了一些设计结果。可以将获得的波形用于MIMO-SAR系统,以提高图像对比度。

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