Interconnection and damping assignment and Euler-Lagrange passivity-based control of photovoltaic/battery hybrid power source for stand-alone applications
Authors
Abstract
A DC hybrid power source composed of photovoltaic cells as the main power source, Li-ion battery storage as the secondary power source, and power electronic interface, is modeled based on port-controlled Hamiltonian systems and Euler-Lagrange framework. Subsequently, passivity-based controllers are synthesized. Local asymptotic stability is ensured as well. In addition, a power management system is designed to manage power flow between components. Modeling and simulation of the proposed hybrid power source is accomplished using MATLAB/Simulink. Our interest is focused on the comparison of the two passivity-based control methods and their use in hybrid power systems.
Keywords
DC hybrid power source; Euler-Lagrange (EL) equations; Interconnection and damping assignment (IDA); Passivitybased control; Photovoltaic; Li-ion battery; TP274; TM911.4
Citation
- Journal: Journal of Zhejiang University SCIENCE C
- Year: 2011
- Volume: 12
- Issue: 9
- Pages: 774–786
- Publisher: Zhejiang University Press
- DOI: 10.1631/jzus.c1000368
BibTeX
@article{Tofighi_2011,
title={{Interconnection and damping assignment and Euler-Lagrange passivity-based control of photovoltaic/battery hybrid power source for stand-alone applications}},
volume={12},
ISSN={1869-196X},
DOI={10.1631/jzus.c1000368},
number={9},
journal={Journal of Zhejiang University SCIENCE C},
publisher={Zhejiang University Press},
author={Tofighi, Ali and Kalantar, Mohsen},
year={2011},
pages={774--786}
}
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