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Adaptive sidelobe blanking for motion compensation

机译:自适应旁瓣消隐用于运动补偿

摘要

A motion compensation method and system is included in a radar antenna system mounted on a moving platform which is subject to pitch, yaw and roll. The radar antenna system includes a main array antenna, and an auxiliary antenna. The auxiliary channel associated with the auxiliary antenna utilizes roll, pitch and yaw angle motion compensations as its auxiliary antenna always steers a horizontal fan shape beam at the horizon to blank any surface (land or sea) based EM interferences. Such motion compensations are provided by a ship motion compensator component and process included within the antenna system. The ship motion compensator component in response to platform motion signals indicative of changes in platform motion angles generates new sets of values using an initial set of weighting coefficient values as a function of such angle motion changes. This produces changes in both amplitude and phase weighting coefficient values which results in both the quadrant phase rotation and the element weighting rotation. The process steers and spreads out the received auxiliary antenna pattern making sidelobe coverage broad enough to compensate for such changes in platform motion.
机译:运动补偿方法和系统包括在安装在受到俯仰,偏航和侧倾的移动平台上的雷达天线系统中。雷达天线系统包括主阵列天线和辅助天线。与辅助天线相关联的辅助信道利用侧倾,俯仰和偏航角运动补偿,因为其辅助天线始终在水平方向上引导水平扇形波束以消隐任何基于表面(陆地或海洋)的电磁干扰。这种运动补偿由天线系统内包括的船舶运动补偿器组件和过程提供。响应于表示平台运动角度变化的平台运动信号,船舶运动补偿器组件使用一组初始的加权系数值作为该角度运动变化的函数来生成新的值集合。这会产生幅度和相位加权系数值的变化,从而导致象限相位旋转和元素加权旋转。该过程控制并扩展了接收到的辅助天线方向图,使得旁瓣覆盖范围足够宽,可以补偿平台运动中的此类变化。

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