吴文豪, 李陶, 龙四春, 周志伟, 祝传广. RADARSAT-2卫星TOPS模式影像干涉处理[J]. 武汉大学学报 ( 信息科学版), 2020, 45(1): 134-140. DOI: 10.13203/j.whugis20180212
引用本文: 吴文豪, 李陶, 龙四春, 周志伟, 祝传广. RADARSAT-2卫星TOPS模式影像干涉处理[J]. 武汉大学学报 ( 信息科学版), 2020, 45(1): 134-140. DOI: 10.13203/j.whugis20180212
WU Wenhao, LI Tao, LONG Sichun, ZHOU Zhiwei, ZHU Chuanguang. Interferometric Processing of RADARSAT-2 TOPS Data[J]. Geomatics and Information Science of Wuhan University, 2020, 45(1): 134-140. DOI: 10.13203/j.whugis20180212
Citation: WU Wenhao, LI Tao, LONG Sichun, ZHOU Zhiwei, ZHU Chuanguang. Interferometric Processing of RADARSAT-2 TOPS Data[J]. Geomatics and Information Science of Wuhan University, 2020, 45(1): 134-140. DOI: 10.13203/j.whugis20180212

RADARSAT-2卫星TOPS模式影像干涉处理

Interferometric Processing of RADARSAT-2 TOPS Data

  • 摘要: 宽幅干涉(terrain observation by progressive scans,TOPS)模式方位向多普勒中心频率的变化导致了干涉图相位的相对扭曲,干涉处理时需要较高的配准精度。加拿大合成孔径雷达遥感卫星(RADARSAT-2)TOPS模式影像由于轨道精度较差,几何配准精度过低,导致其干涉配准较哨兵合成孔径雷达遥感(Sentinel-1)卫星更加复杂。为了实现该卫星TOPS模式影像的干涉处理,首先采用相关配准、谱分集方法依次对几何配准结果进行校正,然后利用增强谱分集进行方位向偏移量矫正。由于依靠卫星星历参数和聚焦成像参数的多普勒中心估计方法精度有限,因此提出了采用相位增量法优化多普勒中心估计结果,并通过影像方位线功率谱检验了估计的多普勒中心。

     

    Abstract: The variation of the azimuth to Doppler center frequency of the terrain observation by progressive scans (TOPS) mode leads to the relative distortion of the phase of the interferogram. Therefore, high registration accuracy is required for interference processing. The Canadian Synthetic Aperture Radar Remote Sensing Satellite (RADARSAT-2) TOPS mode image is less useful due to poor orbital accuracy and geometric registration accuracy, which makes the interference registration more complicated than it in sentinel SAR remote sensing (Sentinel-1) satellite TOPS mode. In order to perform the interference processing of the TOPS mode data, this paper uses the cross-correlation registration to correct the geometric registration results, and then uses the spectral diversity for the second geometric registration correction, and finally uses the enhanced spectral diversity to implement the final azimuth offset correction. Typically, the Doppler centroid estimation from satellite ephemeris parameters and focusing imaging parameters alone does not provide sufficient accuracy. Therefore, a phase increment method is proposed to optimize the Doppler center estimation and the estimated Doppler center is verified by the image bearing power spectrum in this paper.

     

/

返回文章
返回