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首页> 外文期刊>Journal of Real-Time Image Processing >Focusing highly squinted missile-borne SAR data using azimuth frequency nonlinear chirp scaling algorithm
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Focusing highly squinted missile-borne SAR data using azimuth frequency nonlinear chirp scaling algorithm

机译:使用方位频非线性啁啾缩放算法聚焦高度斜视的导弹SAR数据

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摘要

With the development of SAR imaging, the efficiency and rapidity of imaging algorithms have always been a research direction, and real-time imaging is a reflection of the speed of the imaging algorithm. For missile-borne SAR, real-time imaging is particularly important because it provides radar with a sense of the battlefield environment. In the case with a highly squinted angle, the azimuth space variance and the coupling between range and azimuth dimension will become serious in imaging, thus an azimuth frequency nonlinear chirp scaling (AFNCS) algorithm is proposed to solve this problem. Based on linear range walk correction, a novel chirp scaling algorithm is adopted to correct the range migration, and then a high-order phase filtering factor is introduced into the azimuth dimension frequency domain to decrease the azimuth space variance. In addition, combined with the SPECtral Analysis method, the image is focused on the Doppler domain. The AFNCS algorithm does not need complex mathematical calculations such as interpolation and can meet the real-time requirement of missile-borne SAR imaging. Simulation results illustrate the effectiveness of the proposed algorithm. The integration of the research in this paper and the deep learning will further pave the way for real-time SAR imaging applications in disaster monitoring, security and surveillance.
机译:随着SAR成像的发展,成像算法的效率和速度始终是研究方向,并且实时成像是成像算法速度的反映。对于导弹的SAR来说,实时成像尤为重要,因为它提供了具有战场环境感的雷达。在具有高度眯眼角度的情况下,方位空间方差和范围和方位角之间的耦合将变得严重成像,因此提出了一种方位频非线性啁啾缩放(AFNC)算法来解决这个问题。基于线性范围步行校正,采用一种新型啁啾缩放算法来校正范围迁移,然后将高阶相位滤波因子引入方位尺寸频域中以减小方位空间方差。另外,结合光谱分析方法,图像集中在多普勒域上。 AFNCS算法不需要复杂的数学计算,例如插值,可以满足导弹的SAR成像的实时要求。仿真结果说明了所提出的算法的有效性。在本文中的研究与深度学习将进一步为灾害监测,安全性和监测中的实时SAR成像应用程序进一步铺平道路。

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