Xuepeng Huang
Papers
7
Total Citations
46
H-Index
4
About
Xuepeng Huang is a leading researcher in precision optical manufacturing, specializing in robotic bonnet polishing (RBP) for high-performance components. His work addresses critical challenges in polishing efficiency, surface accuracy, and cost reduction for advanced materials like silicon carbide (SiC) used in telescopes and aerospace optics. Huang’s major contributions include developing modified tool influence functions that account for robotic stiffness and structural deformation, enabling more predictable material removal. He has also pioneered movement modeling and control strategies to enhance robotic precision, alongside systematic studies on positioning errors and dynamic performance optimization. His most-cited paper (2023, 15 citations) on stiffness-based influence function modification has become a reference for improving polishing consistency. With over 45 total citations across his publications, Huang’s research bridges the gap between industrial robotics and high-precision optics, offering scalable solutions for manufacturing SiC mirrors and other demanding components. His work on process parameter optimization for SiC polishing (2022) further underscores his impact, providing practical frameworks for reducing production cycles while maintaining sub-micron surface quality. Huang’s contributions are vital for advancing automated optical fabrication.
Research Focus
Key Achievements
Top Papers
- 1
- 2Movement Modeling and Control for Robotic Bonnet Polishing10 citations · 2022
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- 6A Panoramic unwrapping approach based on log-polar mapping2 citations · 2017
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