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Inverse Dynamics-Based Motion Control of a Fluid-Actuated Rolling Robot

Seyed Amir Tafrishi, Yang Bai, Mikhail Svinin, Esmaeil Esmaeilzadeh, Motoji Yamamoto

Year
2019
Citations
4
Access
Open access

Abstract

In this paper, the rest-to-rest motion planning problem of a fluid-actuated spherical robot is studied. The robot is driven by moving a spherical mass within a circular fluid-filled pipe fixed internally to the spherical shell. A mathematical model of the robot is established and two inverse dynamics-based feed-forward control methods are proposed. They parameterize the motion of the outer shell or the internal moving mass as weighted Beta functions. The feasibility of the proposed feed-forward control schemes is verified under simulations.

Keywords

Inverse dynamicsRest (music)RobotControl theory (sociology)Added massShell (structure)Motion (physics)InverseDynamics (music)Motion control

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