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一种基于线性调频缩放和线性调频Z变换的宽测绘带星载TOPS SAR成像算法

A Wide-Swath Spaceborne TOPS SAR Image Formation Algorithm Based on Chirp Scaling and Chirp-Z Transform.

作者信息

Yang Wei, Chen Jie, Zeng Hong Cheng, Wang Peng Bo, Liu Wei

机构信息

School of Electronic and Information Engineering, Beihang University, Beijing 100191, China.

Collaborative Innovation Center of Geospatial Technology, Wuhan 430079, China.

出版信息

Sensors (Basel). 2016 Dec 9;16(12):2095. doi: 10.3390/s16122095.

Abstract

Based on the terrain observation by progressive scans (TOPS) mode, an efficient full-aperture image formation algorithm for focusing wide-swath spaceborne TOPS data is proposed. First, to overcome the Doppler frequency spectrum aliasing caused by azimuth antenna steering, the range-independent derotation operation is adopted, and the signal properties after derotation are derived in detail. Then, the azimuth deramp operation is performed to resolve image folding in azimuth. The traditional dermap function will introduce a time shift, resulting in appearance of ghost targets and azimuth resolution reduction at the scene edge, especially in the wide-swath coverage case. To avoid this, a novel solution is provided using a modified range-dependent deramp function combined with the chirp-z transform. Moreover, range scaling and azimuth scaling are performed to provide the same azimuth and range sampling interval for all sub-swaths, instead of the interpolation operation for the sub-swath image mosaic. Simulation results are provided to validate the proposed algorithm.

摘要

基于逐次扫描地形观测(TOPS)模式,提出了一种用于聚焦宽测绘带星载TOPS数据的高效全孔径成像算法。首先,为克服方位向天线扫描引起的多普勒频谱混叠,采用距离无关去旋转操作,并详细推导了去旋转后的信号特性。然后,进行方位向去斜操作以解决方位向图像折叠问题。传统的去斜函数会引入时间偏移,导致出现重影目标并降低场景边缘的方位向分辨率,尤其是在宽测绘带覆盖情况下。为避免这种情况,提出了一种新颖的解决方案,即使用改进的距离相关去斜函数结合线性调频Z变换。此外,进行距离缩放和方位向缩放,为所有子测绘带提供相同的方位向和距离采样间隔,而不是对子测绘带图像拼接进行插值操作。提供了仿真结果以验证所提算法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41de/5191075/81fe29657849/sensors-16-02095-g001.jpg

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