Shuhua Fang
Papers
5
Total Citations
48
H-Index
4
About
Shuhua Fang is an emerging researcher specializing in advanced electric motor design and precision motion control, with a particular focus on applications in robotics and industrial automation. His work centers on two interconnected domains: the development of novel permanent magnet motor architectures and the implementation of sophisticated control strategies for robotic joint systems. Fang's most significant contribution lies in his pioneering research on permanent magnet arc motors (PMAMs), where his two-step torque optimization strategy — achieving simultaneously high average torque and reduced torque ripple — has garnered 29 citations, establishing him as a notable voice in this specialized field. His subsequent work on partitioned-stator hybrid excited arc motors and frameless motor designs further demonstrates his commitment to pushing the boundaries of power density and torque performance for robotic applications, including robot joints and large telescope drive systems. Complementing his hardware expertise, Fang has made meaningful advances in Active Disturbance Rejection Control (ADRC), developing improved algorithms that address real-world challenges such as gear meshing disturbances, elastic deformation, and joint vibration in six-axis collaborative robots. With a growing publication record accumulating nearly 50 citations across recent years, Fang represents a promising contributor to the intersection of electromagnetic design and intelligent robotic control.
Research Focus
Key Achievements
Top Papers
- 1
- 2Design and Analysis of a Permanent Magnet Frameless Motor7 citations · 2024
- 3Robot Joint Vibration Suppression Method Based on Improved ADRC5 citations · 2025
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- 5