Title :
Model Order Reductions for Stability Analysis of Islanded Microgrids With Droop Control
Author :
Mariani, Valerio ; Vasca, Francesco ; Vasquez, Juan C. ; Guerrero, Josep M.
Author_Institution :
Dept. of Eng., Univ. of Sannio, Benevento, Italy
Abstract :
Three-phase inverters subject to droop control are widely used in islanded microgrids to interface distributed energy resources to a network and to properly share loads among different units. In this paper, a mathematical model for islanded microgrids with linear loads and inverters under frequency and voltage droop control is proposed. The model is constructed by introducing a suitable state-space transformation that allows to write the closed-loop model in an explicit state-space form. Then, the singular perturbations technique is used to obtain reduced order models that reproduce the stability properties of the original closed-loop model. The analysis shows that the currents´ dynamics influence the stability of the microgrid, particularly for high values of the frequency droop control parameters. It is also shown that a further reduction of the model order leads to a typical oscillator model that is not able to predict the possible instability of the droop-controlled system. Numerical and experimental results demonstrate the validity of the proposed models.
Keywords :
closed loop systems; distributed power generation; energy resources; frequency control; invertors; linear systems; reduced order systems; singularly perturbed systems; stability; state-space methods; voltage control; closed-loop model; frequency droop control parameters; interface distributed energy resources; islanded microgrids; linear loads; mathematical model; model order reductions; reduced order models; singular perturbations technique; stability analysis; state-space transformation; three-phase inverters; typical oscillator model; voltage droop control; Integrated circuit modeling; Inverters; Load modeling; Mathematical model; Microgrids; Reduced order systems; Stability analysis; Droop control; microgrids; power systems modeling; power systems stability;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2014.2381151