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A Comparison of Radar Polarimetry Data of the Moon From the LRO Mini-RF Instrument and Earth-Based Systems

机译:LRO Mini-RF仪器与地基系统对月球的雷达极化数据的比较

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摘要

The Mini-RF radar, launched on the Lunar Reconnaissance Orbiter, imaged the lunar surface using hybrid-polarimetric, transmitting one circular polarization and receiving linear H and V polarizations. Earth-based radar operating at the same frequency has acquired data of the same terrains using circular-polarized transmit waves and sampling circular polarizations. For lunar targets where the viewing geometry is nearly the same, the polarimetry derived from Mini-RF and the earth-based data should be very similar. However, we have discovered that there is a considerable difference in circular polarization ratio (CPR) values between the two data sets. We investigate possible causes for this discrepancy, including cross-talk between channels, sampling, and the ellipticity of the Mini-RF transmit wave. We find that none of these can reproduce the observed CPR differences, though a nonlinear block adaptive quantization function used to compress the data will significantly distort some other polarimetry products. A comparison between earth-based data sets acquired using two different sampling modes (sampling received linear polarizations and sampling circular polarizations) suggests that the CPR differences may be partially due to sampling the data in a different receive polarimetry bases.
机译:在月球侦察轨道飞行器上发射的Mini-RF雷达使用混合极化技术对月球表面成像,发射一个圆极化并接收线性H和V极化。以相同频率运行的地基雷达已使用圆极化发射波和采样圆极化来获取相同地形的数据。对于观测几何形状几乎相同的月球目标,由Mini-RF和基于地球的数据得出的旋光度应该非常相似。但是,我们发现两个数据集之间的圆极化率(CPR)值存在很大差异。我们调查了这种差异的可能原因,包括通道之间的串扰,采样和Mini-RF发射波的椭圆率。我们发现,尽管用于压缩数据的非线性块自适应量化功能会明显扭曲其他一些偏振计产品,但这些均无法再现观察到的CPR差异。使用两种不同的采样模式(采样接收的线性极化和采样圆极化)获取的地球数据集之间的比较表明,CPR差异可能部分归因于在不同的接收极化基础上对数据进行采样。

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