Distributed Cooperative Current-Sharing Control of Parallel Chargers Using Feedback Linearization
Author(s) -
Jiangang Liu,
Zhiwu Huang,
Jing Wang,
Jun Peng,
Weirong Liu
Publication year - 2014
Publication title -
mathematical problems in engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.262
H-Index - 62
eISSN - 1026-7077
pISSN - 1024-123X
DOI - 10.1155/2014/636784
Subject(s) - control theory (sociology) , feedback linearization , linearization , lyapunov function , integrator , nonlinear system , decentralised system , network topology , computer science , engineering , control (management) , bandwidth (computing) , telecommunications , physics , quantum mechanics , artificial intelligence , operating system
We propose a distributed current-sharing scheme to address the output current imbalance problem for the parallel chargers in the energy storage type light rail vehicle system. By treating the parallel chargers as a group of agents with output information sharing through communication network, the current-sharing control problem is recast as the consensus tracking problem of multiagents. To facilitate the design, input-output feedback linearization is first applied to transform the nonidentical nonlinear charging system model into the first-order integrator. Then, a general saturation function is introduced to design the cooperative current-sharing control law which can guarantee the boundedness of the proposed control. The cooperative stability of the closed-loop system under fixed and dynamic communication topologies is rigorously proved with the aid of Lyapunov function and LaSalle invariant principle. Simulation using a multicharging test system further illustrates that the output currents of parallel chargers are balanced using the proposed control
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