Airborne sparse flight array SAR 3D imaging based on compressed sensing in frequency domain
In airborne array synthetic aperture radar (SAR), the three-dimensional (3D) imaging performance and cross-track resolution depends on the length of the equivalent array. In this paper, Barker sequence criterion is used for sparse flight sam-pling of airborne array SAR, in order to obtain high cross...
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Veröffentlicht in: | Journal of systems engineering and electronics 2023-02, Vol.34 (1), p.56-67 |
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description | In airborne array synthetic aperture radar (SAR), the three-dimensional (3D) imaging performance and cross-track resolution depends on the length of the equivalent array. In this paper, Barker sequence criterion is used for sparse flight sam-pling of airborne array SAR, in order to obtain high cross-track resolution in as few times of flights as possible. Under each flight, the imaging algorithm of back projection (BP) and the data extraction method based on modified uniformly redundant arrays (MURAs) are utilized to obtain complex 3D image pairs. To solve the side-lobe noise in images, the interferometry between each image pair is implemented, and compressed sensing (CS) recon-struction is adopted in the frequency domain. Furthermore, to restore the geometrical relationship between each flight, the phase information corresponding to negative MURA is compen-sated on each single-pass image reconstructed by CS. Finally, by coherent accumulation of each complex image, the high reso-lution in cross-track direction is obtained. Simulations and experiments in X-band verify the availability. |
doi_str_mv | 10.23919/JSEE.2022.000125 |
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In this paper, Barker sequence criterion is used for sparse flight sam-pling of airborne array SAR, in order to obtain high cross-track resolution in as few times of flights as possible. Under each flight, the imaging algorithm of back projection (BP) and the data extraction method based on modified uniformly redundant arrays (MURAs) are utilized to obtain complex 3D image pairs. To solve the side-lobe noise in images, the interferometry between each image pair is implemented, and compressed sensing (CS) recon-struction is adopted in the frequency domain. Furthermore, to restore the geometrical relationship between each flight, the phase information corresponding to negative MURA is compen-sated on each single-pass image reconstructed by CS. Finally, by coherent accumulation of each complex image, the high reso-lution in cross-track direction is obtained. 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In this paper, Barker sequence criterion is used for sparse flight sam-pling of airborne array SAR, in order to obtain high cross-track resolution in as few times of flights as possible. Under each flight, the imaging algorithm of back projection (BP) and the data extraction method based on modified uniformly redundant arrays (MURAs) are utilized to obtain complex 3D image pairs. To solve the side-lobe noise in images, the interferometry between each image pair is implemented, and compressed sensing (CS) recon-struction is adopted in the frequency domain. Furthermore, to restore the geometrical relationship between each flight, the phase information corresponding to negative MURA is compen-sated on each single-pass image reconstructed by CS. Finally, by coherent accumulation of each complex image, the high reso-lution in cross-track direction is obtained. Simulations and experiments in X-band verify the availability.</abstract><pub>Science and Technology on Electromagnetic Scattering Laboratory,Bejing Insititute of Environment Features,Beijing 100854,China</pub><doi>10.23919/JSEE.2022.000125</doi><tpages>12</tpages><oa>free_for_read</oa></addata></record> |
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title | Airborne sparse flight array SAR 3D imaging based on compressed sensing in frequency domain |
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