The system performance in STARing Digital Multiple Beams SAR

Jiang Tao, Sheng-li Wang
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Abstract

In this paper, an innovative imaging concept of STARing Digital Multiple Beam Synthetic Aperture Radar (SAR) is presented for overcoming the shortcoming of traditional SAR in high-resolution wide-swath imaging, which is the combination of the digital beam-forming (DBF) technology with the principle of SAR. The new imaging concept in this paper can avoid the restriction in the traditional SAR, by dividing the imaging area into several sub-patches to imaging independently. In additional, the whole elements in antenna is employed to form multiple beams in receiver with high gain by DBF, and all of them are assigned to achieving the imaging of every sub-patch by staring observation. The staring observation can extend the length of synthetic aperture and improve the azimuth resolution. At last, the mosaicking process is employed to obtain the high resolution width swath imaging. The simulation shows the STARing Digital Multi-Beam SAR can break though the limitation in the tradition SAR effectively, and have the good system performance.
面向数字多波束SAR系统性能研究
本文针对传统SAR在高分辨率宽波段成像方面的不足,提出了一种创新的直视数字多波束合成孔径雷达(SAR)成像概念,将数字波束形成(DBF)技术与SAR原理相结合,通过将成像区域划分为若干子片进行独立成像,避免了传统SAR的局限性。此外,利用天线内的整体元件通过DBF在接收机内形成高增益的多波束,并将它们全部分配给通过凝视观测实现对每个子patch的成像。凝视观测可以延长合成孔径长度,提高方位角分辨率。最后,采用拼接工艺获得高分辨率的宽幅图像。仿真结果表明,该方法有效地突破了传统数字多波束SAR的局限性,具有良好的系统性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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