Jing Kai, Xu Jia, Huang Zuzhen, Yao Di, Long Teng
School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, China.
Sensors (Basel). 2016 Jun 14;16(6):873. doi: 10.3390/s16060873.
To realize ground moving target indication (GMTI) for a forward-looking array, we propose a novel synthetic aperture radar (SAR) system, called rotatable cross-track interferometry SAR (Ro-XTI-SAR), for squint-looking application in this paper. By changing the angle of the cross-track baseline, the interferometry phase component of squint-looking Ro-XTI-SAR caused by the terrain height can be approximately adjusted to zero, and then the interferometry phase of Ro-XTI-SAR is only sensitive to targets' motion and can be equivalent to the along track interferometry SAR (ATI-SAR). Furthermore, the conventional displaced phase center array (DPCA) method and constant false alarm (CFAR) processing can be used to accomplish the successive clutter suppression, moving targets detection and relocation. Furthermore, the clutter suppressing performance is discussed with respect to different system parameters. Finally, some results of numerical experiments are provided to demonstrate the effectiveness of the proposed system.
为实现前视阵列的地面动目标指示(GMTI),本文提出了一种新型合成孔径雷达(SAR)系统,称为旋转跨轨干涉SAR(Ro-XTI-SAR),用于斜视观测应用。通过改变跨轨基线的角度,由地形高度引起的斜视Ro-XTI-SAR的干涉相位分量可近似调整为零,然后Ro-XTI-SAR的干涉相位仅对目标运动敏感,可等效于沿轨干涉SAR(ATI-SAR)。此外,传统的位移相位中心阵列(DPCA)方法和恒虚警(CFAR)处理可用于实现连续杂波抑制、动目标检测和定位。此外,还针对不同系统参数讨论了杂波抑制性能。最后,给出了一些数值实验结果,以证明所提系统的有效性。