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Distributed Radar Sounder System: a Novel Approach to Across-Track Resolution Enhancement and Clutter Reduction

机译:分布式雷达探测系统:一种新的跨轨道分辨率提高和杂波减少方法

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Spaceborne radar sounders are nadir-looking sensors operating in HF/VHF bands. Their relatively low frequency allows the penetration of the transmitted signals into a given subsurface to infer its geoelectrical properties and composition by analyzing the radar echoes. These type of sensors are affected by unwanted artifacts such as off-nadir clutter mainly resulting from the constraint on the type of deployable antenna which is very often a dipole. Very recent technological advancements open up the possibility of synthesizing very large antenna apertures in HF/VHF band by using small satellites array deployed in suitable orbital formation flying. Accordingly, in this study we propose a novel concept of distributed radar sounder system. The proposed concept is complemented with a mathematical model to predict its performance. The results show that the distributed radar sounder operating in small satellites formation flying is particularly appealing as it can (i) drastically reduce the impact of surface clutter, (ii) increase the across-track resolution, and (iii) increase the signal to noise ratio (or, alternatively, decrease the overall required transmitted power with respect to a traditional radar sounder design).
机译:星源雷达探测器是在HF / VHF带中操作的Nadir看传感器。它们相对较低的频率允许将传输的信号穿透到给定的地下,以通过分析雷达回波来推断其电气性质和组合物。这些类型的传感器受到不需要的伪影的影响,例如离线杂波,主要是由展开天线的类型的限制而导致的,这通常是偶极子。最近的技术进步通过使用在合适的轨道地层飞行中展开的小卫星阵列,打开了在HF / VHF带中合成了非常大的天线孔的可能性。因此,在本研究中,我们提出了一种新颖的分布式雷达探测系统的概念。所提出的概念与数学模型互补,以预测其性能。结果表明,在小卫星形成飞行中运行的分布式雷达测绘仪特别吸引力,因为它可以(i)大大降低表面杂波的影响,(ii)增加跨轨分辨率,(iii)将信号增加到噪声比率(或者,或者,减少相对于传统雷达探测器设计的总体所需的传输功率)。

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