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David Jay

4 accepted papers

2023

Design of STARQ: A Multimodal Quadrupedal Robot for Running, Climbing, and Swimming

IROS 2023poster

Legged animals have developed a variety of modes of locomotion to adapt to the diverse and unknown terrain challenges posed in the natural world. Legged robots, however, have been largely limited to specializing in one domain, with few that have endeavored to bridge the gap between two. In this work…

Cited by 2SourceScholar
2022

Avoiding Dynamic Obstacles with Real-time Motion Planning using Quadratic Programming for Varied Locomotion Modes

IROS 2022poster

We present a real-time motion planner that avoids multiple moving obstacles without knowing their dynamics or intentions. This method uses convex optimization to generate trajectories for linear plant models over a planning horizon (i.e. model-predictive control). While convex optimizations allow fo…

Cited by 10SourceScholar
2022

Trajectory Planning for Sensors and Payloads Moving Through Mixed and Uncertain Media

ICRA 2022poster

Heterogeneous robotic systems in the field often encounter bodies of water with unknown traversability properties. One approach to measuring depth, current, soil composition, etc. is via an in situ underwater sensor being dragged by cable attached to a maneuvering airborne multicopter - which entail…

Cited by 0SourceScholar