About

Avik De is a roboticist whose research spans legged locomotion, robot design, and dynamical systems, with particular emphasis on building agile, physically capable machines grounded in rigorous mathematical theory. He is perhaps best known for his foundational contributions to direct-drive legged robotics, most visibly through the landmark 2016 paper introducing Minitaur — a dynamically running and leaping quadruped — which has accumulated over 316 citations and helped establish a new class of mechanically transparent, high-bandwidth robots. His work on the Penn Jerboa further demonstrated how minimalist, underactuated designs equipped with tails could achieve sophisticated leaping and frontal-plane stabilization behaviors. Theoretically, De has made important strides in extending classical averaging methods to hybrid dynamical systems, enabling formal analysis and synthesis of quadrupedal gaits including bounding, trotting, and pronking. His research on brushless DC motor control has also advanced task-oriented actuator design for robotics. Spanning early work in physical human-robot interaction safety to recent investigations in pedipulation and modular locomotion composition, De's career reflects a sustained commitment to unifying elegant mechanical design with mathematically principled control, making him a significant voice in modern legged robotics research.

Research Focus

Key Achievements

11
H-Index
18
Papers
586
Total Citations
33
Avg Citations/Paper
🏆 Most Cited Paper
Design Principles for a Family of Direct-Drive Legged Robots
316 citations · 2016
📈 Most Prolific Year: 2016 (3 Papers)
🤝 Key Collaborators: 36
🏛 Institutions: University of Pennsylvania, Harvard University, Philadelphia University, Johns Hopkins University, California University of Pennsylvania

Top Papers

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    Physical Human-Robot Interaction in Anthropic Domains: Safety and Dependability
    28 citations · 2005
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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 13 days ago