Systems Engineering and Electronics
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ZHANG Yan, GUO Ping, ZHANG Linrang, TANG Shiyang
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Abstract:
Because of the long synthetic aperture time for the spaceborne synthetic aperture radar (SAR) in the case of high resolution, the effects of acceleration are considerable, and the traditional algorithms would be failed. Based on the acceleration model, the spacevariant of spaceborne SAR in curved flight path is analyzed, and an azimuth frequency domain nonlinear chirp scaling method is proposed to process the case of large scene and high resolution. Firstly, an azimuth polynomial phase filter is constructed to make the coefficients of the perturbation function has sufficient flexibility to eliminate the spatialvariant couple terms between range and azimuth. Then, the traditional twostep method is modified, which is more applicable to the curved flight path. Finally, the gradient operation is used to expand the spacevariant coefficients of azimuth modulation term, and the perturbation function is applied to eliminate the spacevariant in azimuth direction. The simulation results verify the effectiveness of the proposed imaging approach.
ZHANG Yan, GUO Ping, ZHANG Linrang, TANG Shiyang. Azimuth frequency domain nonlinear chirp scaling algorithm for high resolution spaceborne SAR[J]. Systems Engineering and Electronics, doi: 10.3969/j.issn.1001-506X.2017.08.08.
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URL: https://www.sys-ele.com/EN/10.3969/j.issn.1001-506X.2017.08.08
https://www.sys-ele.com/EN/Y2017/V39/I8/1716