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Spaceborne/Stationary Bistatic SAR Imaging With TerraSAR-X as an Illuminator in Staring-Spotlight Mode

机译:在凝视-聚光模式下使用TerraSAR-X作为照明器的星载/静止双基地SAR成像

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This paper addresses some important aspects for the spaceborne/stationary bistatic synthetic aperture radar (SAR) (SS-BiSAR) imaging with the transmitter, TerraSAR-X, operated in staring spotlight (ST) mode. With the large integration time reaching 7.5 s and the azimuth steering span reaching , several significant effects occur, including troposphere delay, precision phase and time synchronization, the curved orbit effect, azimuth spectrum aliasing problem, and efficient frequency domain focusing algorithm. To circumvent the main effects, corresponding solutions are proposed, including a precise synchronization strategy with troposphere delay correction based on the direct signal from the transmitter and a modified and integrative bistatic polar format algorithm (PFA). This paper covers the theoretical development, implementation, and analysis of the SS-BiSAR PFA based on 2-D fast Gaussian gridding nonuniform fast Fourier transform with wavefront curvature correction. Furthermore, the high-resolution ST-mode SS-BiSAR image processed by the proposed algorithm is acquired, and the differences of scattering behaviors between monostatic and bistatic SAR images are analyzed in detail.
机译:本文介绍了星空/静止双基地合成孔径雷达(SAR)(SS-BiSAR)成像的一些重要方面,其发射器TerraSAR-X在凝视聚光(ST)模式下运行。随着大的积分时间达到7.5 s并达到方位角转向跨度,出现了许多重大影响,包括对流层延迟,精确相位和时间同步,弯曲轨道效应,方位频谱混叠问题以及有效的频域聚焦算法。为了规避主要影响,提出了相应的解决方案,包括基于来自发送器的直接信号的对流层延迟校正的精确同步策略以及改进的集成双基地极坐标格式(PFA)。本文介绍了基于二维快速高斯网格非均匀快速傅里叶变换并具有波前曲率校正的SS-BiSAR PFA的理论开发,实现和分析。此外,获取了该算法处理后的高分辨率ST模式SS-BiSAR图像,并详细分析了单静态和双静态SAR图像的散射行为差异。

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