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Radar Scattering From the Composite Ship-Ocean Scene: Doppler Spectrum Analysis Based on the Motion of Six Degrees of Freedom

机译:舰船复合场景中的雷达散射:基于六自由度运动的多普勒频谱分析

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In general, a ship moves with translation and rotation under the action of water. The investigation of the motion of ship is useful for the scattering echo simulation. In this communication, we firstly focus on modeling and simulation for the motion of ship in six degrees of freedom in two dimensional (2-D) sea surface based on the program public domain strip method (PDSTRIP). Then, some further simulations and the influence of various parameters (such as the polarization, incident angle and wind direction) on the Doppler spectrum are analyzed to prove that the facet-based asymptotical model is an effective model to investigate the EM scattering from the 2-D sea surface. Finally, in consideration of the motion of ship in six degrees of freedom, the radar echo and Doppler spectrum of the dynamic composite maritime scene are then studied based on the proposed specular reflection weighted four-path model. It is found that the motion of ship has the most significant effect on the RCS and Doppler spectrum.
机译:通常,船舶在水的作用下平移和旋转。对船舶运动的研究对于散射回波模拟很有用。在本次交流中,我们首先基于程序公共区域条带方法(PDSTRIP),着重于二维(2-D)海面中六个自由度的船舶运动的建模和仿真。然后,分析了一些进一步的仿真以及各种参数(如偏振,入射角和风向)对多普勒频谱的影响,以证明基于分面的渐近模型是研究2维电磁散射的有效模型。 -D海面。最后,考虑到船舶在六个自由度上的运动,基于所提出的镜面反射加权四路径模型,研究了动态复合海事场景的雷达回波和多普勒频谱。研究发现,船舶运动对RCS和多普勒频谱影响最大。

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