Papers
20
Total Citations
396
H-Index
10
About
Xiaoou Li is a robotics and control systems researcher whose work spans human-robot interaction, exoskeleton design, and intelligent control algorithms. Best known for his contributions to upper limb exoskeleton technology, Li played a central role in developing the EXO-UL7 system at UC Santa Cruz, pioneering a dual-level PID admittance control architecture that simultaneously manages internal and contact forces — work that has accumulated over 100 citations and remains a foundational reference in rehabilitation robotics. His systematic and iterative approaches to PID tuning for robot manipulators further cemented his reputation as a rigorous control theorist, with multiple papers on the subject collectively drawing nearly 50 citations. Beyond classical control, Li has embraced machine learning, contributing notable research on multi-agent reinforcement learning for redundant robot control in task-space, which has garnered over 80 citations and reflects the field's pivot toward data-driven methods. His work on trajectory generation using Hidden Markov Models and Lloyd's algorithm, alongside smartphone-based human-machine interfaces for remote robot operation, demonstrates a consistently practical orientation — bridging theoretical elegance with real-world applicability. Collectively, Li's research reflects a career dedicated to making robotic systems more intuitive, adaptive, and accessible.
Research Focus
Key Achievements
Top Papers
- 1PID admittance control for an upper limb exoskeleton103 citations · 2011
- 2Multi-agent reinforcement learning for redundant robot control in task-space81 citations · 2020
- 3Modular design and control of an upper limb exoskeleton25 citations · 2016
- 4A systematic tunning method of PID controller for robot manipulators25 citations · 2011
- 5A novel PID tuning method for robot control24 citations · 2013
- 6
- 7Neural PID admittance control of a robot19 citations · 2013
- 8Optimum design of a parallel robot using neuro-genetic algorithm13 citations · 2021
- 9Tele-manipulation of robot arm with smartphone11 citations · 2013
- 10