Papers

12

Total Citations

313

H-Index

10

About

Michael Hardt is a leading researcher in the field of legged robotics and nonlinear dynamical systems, with a focus on the modeling, optimal control, and hardware realization of bipedal and quadrupedal robots. His major contributions center on developing efficient numerical methods to solve the "curse of dimensionality" in high-dimensional mechanical systems, particularly for generating energy-optimal, dynamically stable gaits. Hardt's seminal work on optimal biped walking, which solved the problem of symmetric, periodic minimum-energy gaits for a 5-link biped robot, has garnered over 53 citations and remains a foundational reference in the field. His 2002 paper on nonlinear hybrid dynamical systems, with 94 citations, introduced key frameworks for modeling and controlling complex mechanical systems, with applications ranging from jet engine compressors to humanoid locomotion. Hardt also made notable contributions to hardware design, including the development of a small, fast-moving autonomous humanoid robot with 17 degrees of freedom, where actuator selection was optimized through detailed multibody dynamics. His work has been instrumental in bridging theoretical optimal control with practical robot design, influencing subsequent research in dynamic walking and running.

Research Focus

Key Achievements

10
H-Index
12
Papers
313
Total Citations
26
Avg Citations/Paper
🏆 Most Cited Paper
Nonlinear Hybrid Dynamical Systems: Modeling, Optimal Control, and Applications
94 citations · 2002
📈 Most Prolific Year: 2003 (5 Papers)
🤝 Key Collaborators: 10
🏛 Institutions: Technische Universität Darmstadt, University of California San Diego

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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