首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Processing of Spaceborne Squinted Sliding Spotlight and HRWS TOPS Mode Data Using 2-D Baseband Azimuth Scaling
【24h】

Processing of Spaceborne Squinted Sliding Spotlight and HRWS TOPS Mode Data Using 2-D Baseband Azimuth Scaling

机译:使用2-D基带方位角缩放处理空间呼出的滑动射灯和HRWS顶部模式数据

获取原文
获取原文并翻译 | 示例

摘要

This article presents an efficient 2-D baseband azimuth scaling (2-D BAS) approach for the focusing of data acquired in the spaceborne squinted sliding spotlight and high-resolution wide-swath (HRWS) terrain observation by progressive scan (TOPS) imaging modes. The existing approaches can become inefficient or invalid due to the coexistence of central "absolute" and marginal "relative" squint in the above-mentioned modes. In this article, the signal properties of spaceborne squint synthetic aperture radar (SAR) with the antenna electronically steering in the azimuth dimension are analyzed first, based on which a new parity-decomposition-based range equation (PDRE) is presented to dedicatedly model the range histories of targets illuminated by the rotating beam. A novel 2-D BAS approach is then developed to remove the odd asymmetric part but preserve the even symmetric part of PDRE, which means a "true derotation" for eliminating the effect of both absolute and relative squints caused by the beam rotation. An even-order-multinomial perturbation function is applied and integrated into a range-Doppler-based SAR processing kernel to efficiently compensate the azimuth variation of high-order range cell migration (RCM) and azimuth phase modulation caused by the 2-D BAS. The proposed processor is efficient, since none of the data extension, the postprocessing for resolving focused-domain folding, or the 2-D frequency-domain interpolation at high squint is needed. Simulations with point targets in the squinted sliding spotlight and HRWS TOPS modes are used to validate the developed algorithm.
机译:本文介绍了一个有效的2-D基带方形缩放(2-D BAS)方法,用于聚焦在空间呼出的斜视聚光灯和高分辨率宽处(HRWS)地形观察中通过渐进式扫描(上部)成像模式。由于中央“绝对”和边缘“相对”眯眼以上述模式的共存,现有方法可能会变得低效或无效。在本文中,首先分析了空间探测合成孔径雷达(SAR)的信号特性,基于所以基于新的奇偶校验分解的范围等式(PDRE)来攻读尖端尺寸的天线的信号性能。由旋转光束照射的目标的范围历史。然后开发了一种新的2-D BAS方法以去除奇数不对称部分,但保持PDRE的偶数对称部分,这意味着用于消除由光束旋转引起的绝对和相对斜面的效果的“真实漏斗”。应用均匀阶多项扰动功能并集成到基于范围多普勒的SAR处理核中,以有效地补偿由2-D BAS引起的高阶范围小区迁移(RCM)和方位相调试的方位角变化。所提出的处理器是有效的,因为没有数据扩展,用于解析聚焦域折叠的后处理,或者在高级别​​处的2-D频域插值。使用斜视的滑动聚光灯和HRWS顶部模式的点目标的模拟用于验证发达的算法。

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