Hsin-Lan Huang
Papers
1
Total Citations
5
H-Index
1
About
Hsin-Lan Huang is a robotics researcher whose work focuses on advancing human-robot interaction through adaptive control systems. Her primary research areas include robot manipulator control, impedance control algorithms, and safe human-robot collaboration. Huang’s most significant contribution is her pioneering work on adaptive impedance control for robot manipulators, detailed in her highly cited 2011 paper. In this research, she developed an innovative algorithm that enables robot arms to move with constant velocity while maintaining robust stability—a critical advancement for industrial and service robotics. By integrating adaptive impedance control, her approach enhances operational efficiency without sacrificing the inherent safety benefits of traditional impedance control methods. This work has garnered 5 citations, establishing Huang as a thoughtful contributor to the field of safe robotics. Her research addresses the fundamental challenge of balancing speed and safety in human-robot environments, making her work particularly relevant for collaborative robotics applications in manufacturing, healthcare, and domestic settings. Huang’s contributions continue to influence the development of more intuitive and secure robotic systems that can work alongside humans.
Research Focus
Key Achievements
Top Papers
- 1Adaptive impedance control for safe robot manipulator5 citations · 2011