Home /Research /Design of kinematic controller based on ant colony optimization computing method for omnidirectional mobile robots
OTHER

Design of kinematic controller based on ant colony optimization computing method for omnidirectional mobile robots

Hsu‐Chih Huang, Ching‐Chih Tsai

Year
2010
Citations
2

Abstract

This paper presents an optimal kinematic controller design based on ant colony optimization (ACO) computing method for omnidirectional mobile robots with three independent driving wheels equally spaced at 120 degrees from one another. The optimal control parameters are obtained by minimizing the performance index using the proposed ACO computing method. These optimal parameters are used in the ACO-based kinematic controller to obtain better performance for omnidirectional mobile robots to achieve both trajectory tracking and stabilization. Simulation results are conducted to show the effectiveness and merit of the proposed ACO-based kinematic controller for omnidirectional mobile robots.

Keywords

KinematicsAnt colony optimization algorithmsMobile robotOmnidirectional antennaController (irrigation)Computer scienceControl theory (sociology)TrajectoryRobotRobot kinematics

Related papers

Browse all OTHER papers