Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload

This paper presents the control of a quadrotor with a cable-suspended payload. The proposed control structure is a hierarchical scheme consisting of an energy-based control (EBC) to stabilize the vehicle translational dynamics and to attenuate the payload oscillation, together with a nonlinear state...

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Main Authors: María-Eusebia Guerrero-Sánchez, Omar Hernández-González, Rogelio Lozano, Carlos D. García-Beltrán, Guillermo Valencia-Palomo, Francisco R. López-Estrada
Format: Article
Language:English
Published: MDPI AG 2019-11-01
Series:Mathematics
Subjects:
Online Access:https://www.mdpi.com/2227-7390/7/11/1090
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spelling doaj-2bc3b99f29134693a0a8feb6da09efc82020-11-25T01:23:42ZengMDPI AGMathematics2227-73902019-11-01711109010.3390/math7111090math7111090Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a PayloadMaría-Eusebia Guerrero-Sánchez0Omar Hernández-González1Rogelio Lozano2Carlos D. García-Beltrán3Guillermo Valencia-Palomo4Francisco R. López-Estrada5Tecnológico Nacional de México/Instituto Tecnológico Superior de Coatzacoalcos, Carretera Antigua Mina-Coatza, km. 16.5, Col. Reserva Territorial, Coatzacoalcos 96536, Veracruz, MexicoTecnológico Nacional de México/Instituto Tecnológico Superior de Coatzacoalcos, Carretera Antigua Mina-Coatza, km. 16.5, Col. Reserva Territorial, Coatzacoalcos 96536, Veracruz, MexicoSorbonne Universités, UTC CNRS UMR 7253 Heudiasyc, 60203 Compiègne, FranceTecnológico Nacional de México/Centro Nacional de Investigación y Desarrollo Tecnológico, Interior Internado Palmira S/N, Col. Palmira, Cuernavaca 62490, Morelos, MexicoTecnológico Nacional de México/Instituto Tecnológico de Hermosillo, Ave. Tecnológico y Periférico Poniente S/N, Hermosillo Sonora 83170, MexicoTecnológico Nacional de México/Instituto Tecnológico de Tuxtla Gutiérrez, TURIX-Dynamics Diagnosis and Control Group, Carr. Panam. km 1080, A.P. 599, Tuxtla Gutierrez 29050, MexicoThis paper presents the control of a quadrotor with a cable-suspended payload. The proposed control structure is a hierarchical scheme consisting of an energy-based control (EBC) to stabilize the vehicle translational dynamics and to attenuate the payload oscillation, together with a nonlinear state feedback controller based on an linear matrix inequality (LMI) to control the quadrotor rotational dynamics. The payload swing control is based on an energy approach and the passivity properties of the system’s translational dynamics. The main advantage of the proposed EBC strategy is that it does not require excessive computations and complex partial differential equations (PDEs) for implementing the control algorithm. We present a new methodology for using an LMI to synthesize the controller gains for Lipschitz nonlinear systems with larger Lipschitz constants than other classical techniques based on LMIs. This theoretical approach is applied to the quadrotor rotational dynamics. Stability proofs based on the Lyapunov theory for the controller design are presented. The designed control scheme allows for the stabilization of the system in all its states for the three-dimensional case. Numerical simulations demonstrating the effectiveness of the controller are provided.https://www.mdpi.com/2227-7390/7/11/1090energy-based controlpayload swing attenuationlinear matrix inequalitiesquadrotorlarger lipschitz constants
collection DOAJ
language English
format Article
sources DOAJ
author María-Eusebia Guerrero-Sánchez
Omar Hernández-González
Rogelio Lozano
Carlos D. García-Beltrán
Guillermo Valencia-Palomo
Francisco R. López-Estrada
spellingShingle María-Eusebia Guerrero-Sánchez
Omar Hernández-González
Rogelio Lozano
Carlos D. García-Beltrán
Guillermo Valencia-Palomo
Francisco R. López-Estrada
Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload
Mathematics
energy-based control
payload swing attenuation
linear matrix inequalities
quadrotor
larger lipschitz constants
author_facet María-Eusebia Guerrero-Sánchez
Omar Hernández-González
Rogelio Lozano
Carlos D. García-Beltrán
Guillermo Valencia-Palomo
Francisco R. López-Estrada
author_sort María-Eusebia Guerrero-Sánchez
title Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload
title_short Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload
title_full Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload
title_fullStr Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload
title_full_unstemmed Energy-Based Control and LMI-Based Control for a Quadrotor Transporting a Payload
title_sort energy-based control and lmi-based control for a quadrotor transporting a payload
publisher MDPI AG
series Mathematics
issn 2227-7390
publishDate 2019-11-01
description This paper presents the control of a quadrotor with a cable-suspended payload. The proposed control structure is a hierarchical scheme consisting of an energy-based control (EBC) to stabilize the vehicle translational dynamics and to attenuate the payload oscillation, together with a nonlinear state feedback controller based on an linear matrix inequality (LMI) to control the quadrotor rotational dynamics. The payload swing control is based on an energy approach and the passivity properties of the system’s translational dynamics. The main advantage of the proposed EBC strategy is that it does not require excessive computations and complex partial differential equations (PDEs) for implementing the control algorithm. We present a new methodology for using an LMI to synthesize the controller gains for Lipschitz nonlinear systems with larger Lipschitz constants than other classical techniques based on LMIs. This theoretical approach is applied to the quadrotor rotational dynamics. Stability proofs based on the Lyapunov theory for the controller design are presented. The designed control scheme allows for the stabilization of the system in all its states for the three-dimensional case. Numerical simulations demonstrating the effectiveness of the controller are provided.
topic energy-based control
payload swing attenuation
linear matrix inequalities
quadrotor
larger lipschitz constants
url https://www.mdpi.com/2227-7390/7/11/1090
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