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Analysis for Resolution of Bistatic SAR Configuration with Geosynchronous Transmitter and UAV Receiver

机译:用地球同步发射机和无人机接收器解析双基地SAR配置

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Bistatical SAR with geosynchronous illuminator and unmanned aerial vehicle receiver (GEO-UAV BiSAR) has significant potential advantages in the field of continuous local observation under a dangerous environment within nearly 24 h. Due to the extreme platform velocity differences, the ellipse orbital movement of GEOSAR makes this BiSAR configuration not like the conventional spaceborne BiSAR. In this paper, based on the orbital kinetic characteristic of GEOSAR, we theoretically analyze the variations of bistatic configuration effect on common azimuth coverage and coherent accumulated time. In addition, two-dimension the resolution is deduced by geometrical configuration on the basis of gradient method. The simulations show that the appropriate selection of initial bistatic configuration can restrain from the appearance of the dead zone in common coverage. And the image results are obtained by frequency domain RD based on Method of Series Reversion (MSR). It is shown that GEO-UAV BiSAR has the high resolution ability.
机译:具有地球同步照明器和无人机接收器(GEO-UAV BiSAR)的双基地SAR在危险环境中连续近24小时内连续本地观测领域具有显着的潜在优势。由于极端的平台速度差异,GEOSAR的椭圆轨道运动使这种BiSAR配置与传统的星载BiSAR不同。本文基于GEOSAR的轨道动力学特性,从理论上分析了双基地配置对共同方位角覆盖和相干累积时间的影响。另外,在梯度法的基础上,通过几何构型推导出二维分辨率。仿真结果表明,初始双基结构的适当选择可以从公共覆盖死区的外观抑制。并通过基于序列回归方法(MSR)的频域RD获得图像结果。结果表明,GEO-UAV BiSAR具有较高的分辨能力。

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