...
首页> 外文期刊>Remote Sensing >Optimal Data Acquisition and Height Retrieval in Repeat-Track Geosynchronous SAR Interferometry
【24h】

Optimal Data Acquisition and Height Retrieval in Repeat-Track Geosynchronous SAR Interferometry

机译:重复轨道地球同步SAR干涉测量中的最佳数据采集和高度检索

获取原文
           

摘要

Geosynchronous synthetic aperture radar (GEO SAR) will move in a high orbit of ~36,000 km with a long integration time of hundreds of seconds. It is obviously impacted by orbital perturbations and the Earth’s rotation, which can give rise to un-parallel repeated tracks and induce a squint-looking angle in the repeat-track SAR interferometry (InSAR). Thus, the traditional data acquisition method using in the zero-Doppler centroid (ZDC) configuration to generate the GEO InSAR pair will bring about the obvious rotation-induced decorrelation. Moreover, the conventional height retrieval model with the broadside mode imaging geometry and the approximate expression of the interferometric baseline will induce large height and localization errors in the GEO InSAR processing. In this paper, a novel data acquisition method is firstly presented based on a criterion of optimal minimal rotational-induced decorrelation (OMRD). It can significantly improve the coherence of the InSAR pair. Then, considering the localization equations in the squint-looking mode and the accurate expression of the interferometric baseline, a modified GEO InSAR height retrieval model is proposed to mitigate the height and localization errors induced by the conventional model. Finally, computer simulations are carried out for the verification of the proposed methods. In a typical inclined GEO InSAR configuration, the averaged total correlation coefficient increases more than 0.4, and height errors of hundreds of meters and localization errors of more than 10 degrees are removed.
机译:地球同步合成孔径雷达(GEO SAR)将在约36,000 km的高轨道上移动,并具有数百秒的长积分时间。显然,它受到轨道扰动和地球自转的影响,这可能引起不平行的重复轨道,并在重复轨道SAR干涉测量法(InSAR)中产生斜视的角度。因此,使用零多普勒质心(ZDC)配置生成GEO InSAR对的传统数据采集方法将带来明显的旋转引起的去相关。此外,具有宽边模式成像几何形状和干涉基线的近似表达式的常规高度检索模型将在GEO InSAR处理中引起较大的高度和定位误差。在本文中,首先提出了一种基于最佳最小旋转诱发去相关(OMRD)准则的新型数据采集方法。它可以显着提高InSAR对的相干性。然后,考虑了斜视模式下的定位方程和干涉基线的精确表达,提出了一种改进的GEO InSAR高度检索模型,以减轻常规模型引起的高度和定位误差。最后,进行计算机仿真以验证所提出的方法。在典型的GEO GEO InSAR倾斜配置中,平均总相关系数增加了0.4以上,并且消除了数百米的高度误差和10度以上的定位误差。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号