Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7116117 | ISA Transactions | 2018 | 13 Pages |
Abstract
The present paper is concerned with the design and experimental evaluation of optimal control laws for the nonlinear attitude dynamics of a multirotor aerial vehicle. Three design methods based on Hamilton-Jacobi-Bellman equation are taken into account. The first one is a linear control with guarantee of stability for nonlinear systems. The second and third are a nonlinear suboptimal control techniques. These techniques are based on an optimal control design approach that takes into account the nonlinearities present in the vehicle dynamics. The stability Proof of the closed-loop system is presented. The performance of the control system designed is evaluated via simulations and also via an experimental scheme using the Quanser 3-DOF Hover. The experiments show the effectiveness of the linear control method over the nonlinear strategy.
Related Topics
Physical Sciences and Engineering
Engineering
Control and Systems Engineering
Authors
Igor Afonso Acampora Prado, Mateus de Freitas VirgÃlio Pereira, Davi Ferreira de Castro, Davi Antônio dos Santos, Jose Manoel Balthazar,