Papers
3
Total Citations
12
H-Index
2
About
Fanshan Meng is a researcher specializing in optical metrology and remote sensing, with a primary focus on the measurement and characterization of the bidirectional reflectance distribution function (BRDF) under extreme conditions. His work is critical for improving the accuracy of infrared remote sensing data by accounting for how surface reflectance changes with temperature and viewing geometry. Meng’s major contributions include the development of a novel infrared BRDF spatial scanning method that optimizes robotic arm rotation strategies, enabling high-resolution measurements. He has also pioneered techniques for measuring BRDF at variable temperatures, extending capabilities to highly reflective surfaces at up to 1000 °C—a significant achievement for applications in aerospace and materials science. His most-cited paper (7 citations) introduces this robotic arm approach, while subsequent works (3 and 2 citations) push the boundaries of high-temperature reflectance characterization. Meng’s research directly supports remote sensing corrections, enhancing the fidelity of thermal imaging and environmental monitoring. His innovative measurement systems and temperature-resilient methodologies represent notable advances in optical property analysis, offering practical tools for scientists and engineers working with challenging surface conditions.
Research Focus
Key Achievements
Top Papers
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