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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Processing of Multichannel Sliding Spotlight and TOPS Synthetic Aperture Radar Data
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Processing of Multichannel Sliding Spotlight and TOPS Synthetic Aperture Radar Data

机译:多通道滑动聚光灯和TOPS合成孔径雷达数据的处理

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The inherent limitation between azimuth resolution and range swath width in conventional spaceborne synthetic aperture radar (SAR) systems can be overcome by introducing the displaced phase center antenna technique. In these SAR systems, echoes from all subapertures should be reconstructed and combined together before single-channel SAR processors. However, in the multichannel sliding spotlight and Terrain Observation by Progressive Scans (TOPS) modes, azimuth beam progressive sweeping during the whole acquisition interval leads to that the total Doppler bandwidth spans over several $N cdot hbox{PRF}$ intervals, where $N$ is the number of azimuth channels and PRF is the pulse repetition frequency. As a result, conventional azimuth multichannel reconstruction algorithms for the stripmap mode are not directly suitable for sliding spotlight and TOPS modes. This paper proposes a novel imaging processor for both modes according to their azimuth echo properties. The key point of the proposed focusing processor is the first processing step of multichannel azimuth data reconstruction, which extends the two-step focusing technique to process raw data of the azimuth multichannel case. In addition to azimuth data preprocessing and accurate range cell migration correction steps, the final postprocessing step is added to correct the possible back-folded SAR images. Imaging results on simulated raw data validate the proposed imaging approach.
机译:通过引入位移相中心天线技术,可以克服常规星载合成孔径雷达(SAR)系统中方位角分辨率和测距幅宽之间的固有限制。在这些SAR系统中,在单通道SAR处理器之前,应将所有子孔径的回波重建并合并在一起。但是,在多通道滑动聚光灯和逐行扫描地形(TOPS)模式下,在整个采集间隔内进行方位波束逐行扫描会导致总的多普勒带宽跨越几个<公式式 $ N cdot hbox {PRF} $ 间隔,其中 $ N $ 是方位通道的数量和PRF是脉冲重复频率。结果,用于带状图模式的常规方位角多通道重建算法不直接适用于滑动聚光灯和TOPS模式。本文针对两种模式,根据其方位角回波特性,提出了一种新颖的成像处理器。所提出的聚焦处理器的关键是多通道方位数据重构的第一步,它扩展了两步聚焦技术以处理方位多通道情况的原始数据。除了方位数据预处理和精确的距离像元迁移校正步骤外,还添加了最后的后处理步骤以校正可能的反折SAR图像。在模拟原始数据上的成像结果验证了所提出的成像方法。

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