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A ROBUST ON-BOARD TRACKING TECHNIQUE FOR SPACEBORNE RADAR SOUNDERS

机译:用于太空雷达探测器的强大的车载跟踪技术

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In spaceborne radar sounder systems, the constraint on data storage imposes an upper bound to the radar receiving window length. Accordingly, an adaptive tracking procedure capable of shifting the receiving window in time according to the topography and spacecraft orbit variations is needed for maximizing the amount of signal acquired from the subsurface. Moreover, spaceborne sounder systems usually have constraints in terms of number of acquisitions and power consumption. Thus, tracking robustness and simplicity are mandatory requirements. In this paper, we present an adaptive range tracking technique derived from a combination of OCOG (Offset Center Of Gravity) leading edge estimation and α-β filter. It gives significant improvements in the loss of lock detection. The performances of the overall technique are evaluated by different simulations of meaningful application scenarios which confirm its effectiveness.
机译:在空间罗达探测系统中,数据存储的约束施加到雷达接收窗口长度的上限。因此,需要根据地形和航天器轨道变化在时间及时移动接收窗口的自适应跟踪过程,以便最大化从地下所获取的信号量。此外,星载发声器系统通常在采集和功耗方面具有约束。因此,跟踪稳健性和简单性是强制性要求。在本文中,我们介绍了一种自适应范围跟踪技术,从OCOG(偏移)前沿估计和α-β滤波器的组合导出。它对锁定检测丢失产生了显着的改进。通过对其有效性的有意义应用场景的不同模拟来评估整体技术的性能。

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