Title :
Velocity synchronization of networked Euler-Lagrange systems with switching network topologies subject to actuator faults
Author :
Mehrabian, A.R. ; Tafazoli, S. ; Khorasani, K.
Author_Institution :
Dept. of Electr. & Comput. Eng., Concordia Univ., Montreal, QC, Canada
Abstract :
In this paper, we first introduce a distributed control strategy for velocity synchronization (or velocity consensus seeking) of multiple heterogeneous Euler-Lagrange (EL) systems with switching communication network topologies. This controller is denoted as the “nominal” controller. To guarantee velocity synchronization for switching communication network topologies we require existence of non-vanishing dwell-time between any two sequential switches. Next, we consider two types of actuator faults namely (1) additive actuator fault, and (2) loss of effectiveness actuator fault. By employing the nominal control algorithm developed for velocity synchronization, we introduce two control algorithms for velocity synchronization in presence of the two types of faults. Simulation results illustrate and demonstrate the effectiveness of our proposed control algorithms.
Keywords :
distributed control; networked control systems; synchronisation; time-varying systems; actuator faults; additive actuator fault; distributed control; multiple heterogeneous Euler-Lagrange systems; networked Euler-Lagrange systems; nominal controller; nonvanishing dwell-time; sequential switches; switching communication network topologies; switching network topologies; velocity consensus seeking; velocity synchronization; Actuators; Communication networks; Lyapunov method; Network topology; Switches; Synchronization; Topology; Euler-Lagrange systems; Formation control; Lyapunov stability; Networked multi-agent systems; Nonlinear systems;
Conference_Titel :
Control and Fault-Tolerant Systems (SysTol), 2010 Conference on
Conference_Location :
Nice
Print_ISBN :
978-1-4244-8153-8
DOI :
10.1109/SYSTOL.2010.5676044