Peter Stauter
Papers
1
Total Citations
8
H-Index
1
About
Peter Stauter is a control systems researcher whose work centers on the intersection of nonlinear dynamics and robotics, with a particular focus on passivity-based control and backstepping techniques for flexible structures. His most influential contribution, the 2010 paper "Passivity Based Backstepping Control of an Elastic Robot," has garnered 8 citations, establishing a foundation for stabilizing complex, underactuated robotic systems. Stauter’s approach uniquely combines passivity theory—ensuring energy dissipation and stability—with backstepping, a recursive method for designing controllers for nonlinear systems. This work addresses a critical challenge in robotics: managing the oscillations and compliance inherent in elastic joints and lightweight manipulators, which are vital for safe human-robot interaction and high-speed automation. While his citation count reflects a focused, niche impact, Stauter’s research has influenced subsequent studies on energy-based control for flexible robots, particularly in applications requiring precision and robustness. His contributions are notable for bridging theoretical rigor with practical implementation, offering engineers a systematic framework to design controllers that guarantee stability without sacrificing performance. For students and researchers exploring nonlinear control or soft robotics, Stauter’s work provides a clear, foundational example of how classical control theory can be adapted to modern, elastic systems.
Research Focus
Key Achievements
Top Papers
- 1Passivity Based Backstepping Control of an Elastic Robot8 citations · 2010