Evento
Hybrid adaptive control for UAV Data Collection: a simulation-based design to trade-Off resources between Stability and Communication
Colaboradores:
Chan, W. K. V.; D’Ambrogio, A.; Zacharewicz, G.; Mustafee, N.; Wainer, G.; Page, E.
Tipo del evento:
Conferencia
Nombre del evento:
Winter Simulation Conference
Fecha del evento:
03/12/2017
Institución Organizadora:
Institute of Electrical and Electronics Engineers;
Título del Libro:
Proceedings of the 2017 Winter Simulation Conference
Editorial:
IEEE Computer Society
ISBN:
978-1-5386-3428-8
Idioma:
Inglés
Clasificación temática:
Resumen
We present the design of a hybrid control system for an Unmanned Aerial Vehicle (UAV) used for data collection from wireless sensors. We postulate a restrictive scenario where a low-cost processor is in charge of both flying the UAV and resolving data communication. This raises the need for safe trade-off of computing resources between stability and throughput, adapting to unpredictable environment changes. We present a strategy where a supervisory controller implements an adaptive relaxation of the sampling period of the UAV regulation controller to favor communication tasks. To guarantee stability under period switching we update the discrete-time control law with suitable gains. The resulting system comprises continuous, discrete-time and discrete-event dynamics, including event-based adaptation of the discrete-time controller. We show how the DEVS modeling and simulation framework can support a full simulation-based design, verification and validation process, featuring a seamless composition of the underlying hybrid domains.
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Colecciones
Eventos(IAM)
Eventos de INST.ARG.DE MATEMATICAS "ALBERTO CALDERON"
Eventos de INST.ARG.DE MATEMATICAS "ALBERTO CALDERON"
Eventos(ITHES)
Eventos de INST. DE TECNOLOGIAS DEL HIDROGENO Y ENERGIAS SOSTENIBLES
Eventos de INST. DE TECNOLOGIAS DEL HIDROGENO Y ENERGIAS SOSTENIBLES
Citación
Hybrid adaptive control for UAV Data Collection: a simulation-based design to trade-Off resources between Stability and Communication; Winter Simulation Conference; Las Vegas; Estados Unidos; 2017; 1704-1715
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