DocumentCode
49080
Title
A Multivariable Design Methodology for Voltage Control of a Single-DG-Unit Microgrid
Author
Bahrani, Behrooz ; Saeedifard, Maryam ; Karimi, Alireza ; Rufer, Alfred
Author_Institution
Ind. Electron. Lab., Ecole Polytech. Fed. de Lausanne (EPFL), Lausanne, Switzerland
Volume
9
Issue
2
fYear
2013
fDate
May-13
Firstpage
589
Lastpage
599
Abstract
This paper proposes a multivariable digital control design methodology for the voltage regulation of an islanded single distributed generation (DG) unit microgrid and its dedicated load. The controller design methodology is based on a family of spectral Multi-Input Multi-Output (MIMO) models of the microgrid system and performs open-loop shaping and system decoupling simultaneously by a convex optimization approach. The control design procedure includes: (i) the determination of a family of nonparametric models of the system at various operating points, (ii) the determination of the class of the controller, and (iii) system open-loop shaping by convex minimization of the summation of the square second norm of the errors between the system open-loop transfer functions and a desired open-loop transfer function. Based on the proposed design methodology, two dq -augmented voltage controllers are proposed to regulate the load voltages of a single-DG-unit microgrid. The proposed controllers guarantee the robust stability and satisfactory dynamic response of the system in spite of load parametric uncertainties and also the presence of nonlinear load. This paper describes the theoretical aspects involved in the design procedure of the controllers and evaluates the performance of the controllers based on simulation studies and experiments.
Keywords
MIMO systems; control system synthesis; convex programming; digital control; distributed power generation; dynamic response; minimisation; multivariable control systems; open loop systems; power generation control; power grids; transfer functions; voltage control; control design procedure; controller class; controller design methodology; convex minimization; convex optimization approach; dq-augmented voltage controllers; islanded single DG unit microgrid; islanded single distributed generation unit microgrid; load parametric uncertainties; load voltages; multivariable digital control design methodology; nonparametric models; open-loop shaping; operating points; spectral MIMO models; spectral multiinput multioutput models; square second norm; system decoupling; system dynamic response; system open-loop transfer functions; voltage regulation; Design methodology; Load modeling; MIMO; Optimization; Transfer functions; Voltage control; Convex optimization; digital multivariable control; distributed generation; islanded mode; loop shaping; microgrid; voltage regulation; voltage source converter;
fLanguage
English
Journal_Title
Industrial Informatics, IEEE Transactions on
Publisher
ieee
ISSN
1551-3203
Type
jour
DOI
10.1109/TII.2012.2221129
Filename
6317174
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