Jiubin Tan
Papers
4
Total Citations
81
H-Index
4
About
Jiubin Tan is a leading figure in precision measurement and sensor technology, with research spanning tilt sensing, optical fiber shape monitoring, and multi-degree-of-freedom interferometry. His most impactful work includes the development of an annular planar-capacitive tilt sensor that achieves a full 360° measurement range—a breakthrough for applications like crane boom monitoring—garnering 51 citations. He has also pioneered an optical fiber shape sensor for real-time structural monitoring in industrial and architectural settings, addressing critical safety concerns. In the realm of interferometry, Tan introduced "fused-like angles" as a novel orientation representation for six-degree-of-freedom grating interferometers, offering a more intuitive alternative to traditional roll-pitch-yaw angles. His recent work on automated measurement of aero-engine fan blade geometric parameters demonstrates his commitment to advancing manufacturing precision. With over 80 combined citations across his key publications, Tan’s contributions are essential for engineers and researchers developing high-accuracy, real-time sensing systems for demanding environments.
Research Focus
Key Achievements
Top Papers
- 1An Annular Planar-capacitive Tilt Sensor with a 360° Measurement Range51 citations · 2015
- 2Structure shape measurement method based on an optical fiber shape sensor13 citations · 2023
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