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Vortex SAR Imaging Method Based on OAM Beams Design

机译:基于OAM光束设计的涡旋SAR成像方法

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摘要

Vortex synthetic aperture radar (SAR), combination of the orbital angular momentum (OAM) beams and the stripmap SAR technology, is proposed to achieve higher azimuth resolution. Firstly, the imaging scenario and the echo model are established and derived. Secondly, the pre-processing approaches, including the amplitude compensation and the phase compensation, are developed by the design of the transmitted OAM beams. Then, an improved range-Doppler (RD) algorithm is proposed to acquire target's two dimensional (2D) profiles. Simulation results demonstrate the effectiveness of the proposed algorithm, and the influence factors of the azimuth resolution are analyzed as well. Compared with the conventional SAR, the proposed vortex SAR imaging method can achieve higher azimuth resolution with the same synthetic aperture length (SAL). This work can benefit the applications of OAM-carrying waves in radar realms as well as the development of high-resolution SAR imaging technique.
机译:涡旋合成孔径雷达(SAR),轨道角动量(OAM)光束和条带图SAR技术的组合,以实现更高的方位角分辨率。首先,建立并导出成像场景和回声模型。其次,通过设计的OAM光束的设计开发了预处理方法,包括幅度补偿和相位补偿。然后,提出了一种改进的范围 - 多普勒(RD)算法来获取目标的二维(2D)轮廓。仿真结果证明了所提出的算法的有效性,并且还分析了方位分辨率的影响因素。与传统的SAR相比,所提出的涡旋SAR成像方法可以通过相同的合成孔径(SAL)实现更高的方位角分辨率。这项工作可以使OAM携带的波浪在雷达领域中的应用有益于高分辨率SAR成像技术的应用。

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