Papers
5
Total Citations
34
H-Index
3
About
Matthias Hofmann is a robotics researcher whose work focuses on bipedal locomotion and perception for humanoid robots, particularly in the dynamic and competitive environment of RoboCup soccer. His key contributions lie in developing cost-effective, robust control and vision systems that enable stable walking and reliable localization. Hofmann’s most influential work, the "Flexible Linear Inverted Pendulum Model" (2015, 14 citations), extends the classic LIPM to make biped walking control simpler and more accessible for affordable robot platforms, directly addressing a barrier to entry in humanoid research. He also pioneered a "Robust and Calibration-Free Vision System" (2015, 10 citations) designed for the Standard Platform League, offering real-time, lighting-robust perception without tedious calibration—a practical tool widely adopted by the community. His research on reactive stepping (2016, 6 citations) provides a preview-controller-based algorithm to compute foot placement modifications for balance recovery, explaining common failure modes in humanoid walking. Through these works, Hofmann has advanced the practicality of humanoid robotics, making sophisticated locomotion and vision more attainable for researchers and students alike.
Research Focus
Key Achievements
Top Papers
- 1Flexible Linear Inverted Pendulum Model for cost-effective biped robots14 citations · 2015
- 2A Robust and Calibration-Free Vision System for Humanoid Soccer Robots10 citations · 2015
- 3
- 4SLAM in the Dynamic Context of Robot Soccer Games2 citations · 2013
- 5On Sensor Model Design Choices for Humanoid Robot Localization2 citations · 2013