Home /Research /Experimental dynamics of wing assisted running for a bipedal ornithopter
LOCOMOTION

Experimental dynamics of wing assisted running for a bipedal ornithopter

Kevin Peterson, Ronald S. Fearing

Year
2011
Citations
60

Abstract

BOLT is a lightweight bipedal ornithopter capable of high-speed dynamic running and effecting transitions between aerial and terrestrial locomotion modes. The gait dynamics of both quasi-static and dynamic locomotion are examined through the use of an on-board accelerometer, part of a one gram electronics package also containing a processor and radio. We discuss the accelerations in the context of the traditional spring-loaded inverted pendulum model seen in nearly all legged locomotion in organisms. Flapping wings are shown to provide damping along with propulsive force. The aerodynamic forces of the flapping wings also impart passive stability to the robot, enabling it to run bipedally with only a single actuator. BOLT transitions from ground running to aerial hovering in as little as one meter of runway. Overall, the advantages provided by wings in terrestrial locomotion, coupled with aerial capabilities, allow BOLT to navigate complex three dimensional environments, switching between locomotion modes when necessary.

Keywords

FlappingAerodynamicsRobotContext (archaeology)ActuatorAccelerometerPendulumWingComputer scienceAerospace engineering

Related papers

Browse all LOCOMOTION papers