H. Brugger
Papers
8
Total Citations
49
H-Index
4
About
H. Brugger is a robotics and control systems researcher whose work has made meaningful contributions to the field of autonomous mobile robot navigation. Active primarily in the late 1990s and early 2000s, Brugger focused on two interconnected challenges: precise motion control and reliable navigation for wheeled mobile robots. Their research tackled the fundamental difficulty posed by nonholonomic constraints in wheeled systems, developing globally asymptotically stable position controllers and optimal feedback control laws that achieved smooth, human-like driving behavior despite the theoretical limitations of time-invariant stabilization. A significant thread of Brugger's work addressed the practical problem of odometry error — the accumulated inaccuracies that plague dead-reckoning navigation. By fusing inertial sensor data from gyroscopes and accelerometers with odometry information using Kalman filters and rule-based strategies, Brugger developed low-cost, high-precision navigation systems capable of compensating for wheel skid and tracking errors. These contributions, demonstrated on the B21 mobile robot platform, earned their most-cited papers 15 and 13 citations respectively. Brugger also advanced adaptive path control methods and combined trajectory-position control architectures, offering a comprehensive body of work that remains a useful reference for researchers designing robust autonomous navigation systems.
Research Focus
Key Achievements
Top Papers
- 1Low level sensor fusion for autonomous mobile robot navigation15 citations · 2003
- 2
- 3Optimal feedback position control for an autonomous mobile robot5 citations · 2000
- 4
- 5
- 6Adaptive self-tuning path control system for an autonomous mobile robot3 citations · 2003
- 7Path controller implementation for an autonomous mobile robot3 citations · 1999
- 8