遥感
辐射计
亮度温度
插值(计算机图形学)
微波食品加热
微波辐射计
亮度
比例(比率)
计算机科学
雷达
微波成像
地质学
地理
物理
人工智能
光学
地图学
运动(物理)
电信
作者
Zhiguo Meng,Xuegang Dong,Jietao Lei,Jinsong Ping,Zhanchuan Cai,Xiaoping Zhang,Shaopeng Huang,Yuanzhi Zhang
标识
DOI:10.1109/tgrs.2023.3305298
摘要
The Chang'e-1/2 satellites carried microwave radiometers (MRM), which supplied unique passive microwave data, supplementing visible, thermal infrared, and radar data in current lunar studies. However, the application of MRM data is constrained by the limited amount of the original dataset, which cannot express spatial variations at given local times. In this study, we present a novel approach to constructing a local-time brightness temperature (TB) model using barycentric interpolation based on Delaunay tetrahedralization. This model enables the generation of a complete TB dataset, producing TB maps that are both continuous and self-consistent in both spatial and temporal domains. Compared to the traditional methods, those generated in this work avoid a ~7-K bias on a global scale. Furthermore, the interpolated maps offer superior representations of the TB over time for various lunar surfaces. The preliminary evaluations on global and regional scales hint important application of MRM data in studying the geological features of the Moon.
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