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De-coupled dynamics control of a spherical rolling robot for waypoint navigation
Conference proceeding

De-coupled dynamics control of a spherical rolling robot for waypoint navigation

Van Duong Nguyen, Gim Song Soh, Shaohui Foong and Kristin Wood
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) Conference Proceedings, p.562
01/01/2017

Abstract

Cybernetics Locomotion Mechatronics Motion capture Navigation Odometers Pitch (inclination) Robots Rolling motion Sliding mode control Spherical shells Spin dynamics Trajectory analysis Waypoints Yaw
Conference Title: 2017 IEEE International Conference on Cybernetics and Intelligent Systems (CIS) and IEEE Conference on Robotics, Automation and Mechatronics (RAM) Conference Start Date: 2017, Nov. 19 Conference End Date: 2017, Nov. 21 Conference Location: Ningbo, China In this paper, the decoupled control of a non-holonomic spherical rolling robot capable of waypoint navigation over planar surfaces is investigated. The robot consists of an external spherical shell driven by an internal two-wheeled differential drive cart fused with odometry and IMU sensors. We derived the robot dynamic model under roll and spin locomotion using Lagrangian, and studied its performance under independent control of these two modes of locomotion. Experiments are conducted to evaluate the control performance on a rectangular waypoint trajectory, captured using an optical motion capture system. The result showed that with our implemented sliding mode controller of the cart's pitch and PD controller of the cart's yaw, the spherical robot can follow the desired set of waypoints effectively.

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