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An Infinite-Norm Algorithm for Joystick Kinematic Control of Two-Wheeled Vehicles

Alejandro Said, Yasser A. Davizón, Rogelio Soto, Carlos Félix-Herrán, Piero Espino

Year
2018
Citations
4
Access
Open access

Abstract

In this paper, we propose an algorithm based on the mathematical p-norm which has been applied to improve both the traction power and the trajectory smoothness of joystick-controlled two-wheeled vehicles. This algorithm can theoretically supply 100% of available power to each of the actuators if the infinity-norm is used, i.e., when the p-norm tends to infinity. Furthermore, a geometrical model using the radius of curvature has been developed to track the effect of the proposed algorithm on the vehicle’s trajectory. Findings in this research work contribute to the kinematic control and path planning algorithms for vehicles actuated by two wheels, such as tanks and electric wheelchairs, both of vital importance for the security and heath industry. Computer simulations and experiments with a real robot are performed to verify the results.

Keywords

JoystickKinematicsNorm (philosophy)CurvatureAlgorithmComputer scienceRobotSimulationControl theory (sociology)Trajectory

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