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Simulation of Multiangular Radar Echoes for Speed Measurement During CE-3 Landing on the Lunar Sinus Iridum Surface

机译:CE-3登陆月球铱星表面时测速的多角度雷达回波的模拟

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摘要

The main objective of the Chinese Chang'E-3 (CE-3) lunar satellite is to achieve soft-landing and roving exploration on the lunar surface. A multibeam radar in the lunar lander is implemented to measure the echoes from the lunar rough surface during its descending and to derive the speed of the lander. In this paper, numerical simulation of multiangular radar echoes and speed inversions from Doppler frequency are presented. An area of the Lunar Sinus Iridum bay, as landing site, is specifically selected. The rough surface described with the real DTM data is first divided into triangular patches for numerical Kirchhoff approximation calculation. The radar echoes of multiangular radar beams of CE-3 during the landing are numerically simulated. The echo phase and the Doppler frequency are then derived to obtain the vertical speed.
机译:中国Chang娥三号(CE-3)月球卫星的主要目标是实现对月球表面的软着陆和巡逻探测。在月球着陆器中安装了多波束雷达,以测量月球粗糙表面下降期间的回波并推算着陆器的速度。本文给出了多角雷达回波的数值模拟和多普勒频率的速度反演。特别选择了月球铱星海湾作为登陆点的区域。首先,将用实际DTM数据描述的粗糙表面划分为三角形小块,以进行数值Kirchhoff近似计算。数值模拟了CE-3多角雷达波束着陆过程中的雷达回波。然后推导回波相位和多普勒频率以获得垂直速度。

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