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Altitude Estimation of Missile-borne Radar Seeker Based on Front-downward View and Range-Doppler Analysis

机译:基于前向视图和范围 - 多普勒分析的导弹雷达导引头的高度估计

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The altitude of the missile-borne radar seeker relative to the illuminated region is a significant parameter for the geometric correction in synthetic aperture radar (SAR) imaging. Error in altitude causes geometric distortion, which affects the performances of the subsequent scene matching and the target identification in SAR. Conventional radar altimeter with the down-looking antenna is not appropriate for missile-borne radar seeker with the forward antenna. To circumvent this problem, a Range-Doppler based Altitude Estimation algorithm (RDAE) appropriate for front-downward illumination is proposed based on the geometrical relationship between the relative altitude and the Range/Doppler between the platform and the illuminated region. The performance of the RDAE is investigated through simulation, and the results show that the RDAE has high estimation accuracy.
机译:相对于照明区域的导弹雷达导向器的高度是合成孔径雷达(SAR)成像中的几何校正的重要参数。海拔地区的错误导致几何失真,这会影响后续场景匹配的性能和SAR中的目标标识。传统的雷达高度计与下眼的天线不合适用于带前天线的导弹雷达导引。为了避免该问题,基于平台和照明区域之间的相对高度和范围/多普勒之间的几何关系,提出了适合于前向照明的基于范围多普勒的高度估计算法(RDAE)。通过仿真研究了RDAE的性能,结果表明,RDAE具有高估计精度。

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