Home /Research /Pauses Provide Effective Control for an Underactuated Oscillating Swimming Robot
OTHER

Pauses Provide Effective Control for an Underactuated Oscillating Swimming Robot

Gedaliah Knizhnik, Philip de Zonia, Mark Yim

Year
2020
Citations
10

Abstract

We describe motion primitives and closed-loop control for a unique low-cost single-motor oscillating aquatic system: the Modboat. The Modboat is driven by the conservation of angular momentum, which is used to actuate two passive flippers in a sequential paddling motion for propulsion and steering. We propose a discrete description of the motion of the system, which oscillates around desired trajectories, and propose two motion primitives - one frequency based and one pause-based - with associated closed-loop controllers. Testing is performed to evaluate each motion primitive, the merits of each are presented, and the pause-based primitive is shown to be significantly superior. Finally, waypoint following is implemented using both primitives and shown to be significantly more successful using the pause-based motion primitive.

Keywords

UnderactuationWaypointControl theory (sociology)Motion (physics)Motion controlComputer scienceTrajectoryRobotControl (management)Simulation

Related papers

Browse all OTHER papers