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Full-time Resolution analysis and Path Determination for air borne Forward-Looking SAR with Opportunistic Illuminator

机译:带机会照明器的机载前视SAR全时分辨率分析和路径确定

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The bistatic SAR has forward-looking imaging capabilities if a opportunistic illuminator is selected to form the synthetic aperture. This would enable it to perform some inspection tasks that traditional SAR cannot perform. The system resolution of a bistatic SAR is related to its configuration. Due to the special configuration of the bistatic forward-looking SAR, the traditional system trajectory design method is no longer applicable. Therefore, a trajectory design method used for bistatic forward-looking SAR is proposed in this paper. First, the original trajectory of the receiver is determined according to the system which is always cannot be changed. Then, the slant range and the pitch angle of the transmitter are determined at each time. Next, the resolution of the transmitter under different squint angles at different times is calculated. Then, the available area of squint angle is obtained by drawing the results into a diagram. Finally, a position curve of the squint angle that is contained within the available area is found, and then the position of the transmitter and the resolution are calculated based on the position curve. The method can make the resolution of the forward-looking SAR system meet the requirements at all times under the condition that the changes to the original trajectory are at the minimum. The simulation results verify the validity of the proposed method.
机译:如果选择机会照明器来形成合成孔径,则双基地SAR具有前瞻性成像功能。这将使其能够执行传统SAR无法执行的某些检查任务。双基地SAR的系统分辨率与其配置有关。由于双基地前视SAR的特殊配置,传统的系统轨迹设计方法不再适用。因此,本文提出了一种用于双基地前瞻性SAR的弹道设计方法。首先,接收器的原始轨迹是根据始终无法更改的系统确定的。然后,每次确定发射器的倾斜范围和俯仰角。接下来,计算在不同时间在不同斜视角度下的发射器分辨率。然后,通过将结果绘制成图表来获得斜角的可用区域。最后,找到包含在可用区域内的斜视角的位置曲线,然后基于该位置曲线来计算发送器的位置和分辨率。该方法可以在使原始轨迹的变化最小的情况下,使前瞻性SAR系统的分辨率始终满足要求。仿真结果验证了该方法的有效性。

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