Title :
Stability analysis and active stabilization by a centralized stabilizer of Voltage-Source-Rectifier Loads in AC microgrids
Author :
LeBlanc, D. ; Nahid-Mobarakeh, B. ; Pham, Binh ; Pierfederici, S. ; Davat, B.
Author_Institution :
GREEN, Univ. of Lorraine, Vandoeuvre-les-Nancy, France
Abstract :
This paper deals with the stability analysis and the active stabilization of Voltage-Source-Rectifier Loads in AC microgrids using a centralized stabilizer. A model of this system is first performed considering the voltage loop dynamics of the rectifier and stability analysis is done using the indirect method of Lyapunov. The stabilizability study realized with Lie algebra shows that the action of an external stabilizer is limited to the AC side of the system. This stabilizer is an inverter only dedicated to the stabilization of the AC bus of the system at the connecting point. To improve the stability area, a feedback control of the stabilizer based on the small-signal theory is developed. A theoretical analysis, simulations and experimental results are presented to evaluate the effectiveness of the proposed method.
Keywords :
Lie algebras; Lyapunov methods; distributed power generation; feedback; invertors; rectifiers; stability; AC bus; AC microgrid; Lie algebra; Lyapunov. method; active stabilization; centralized stabilizer; feedback control; inverter; small-signal theory; stability analysis; voltage loop dynamics; voltage-source-rectifier load; Microgrids; Phase locked loops; Rectifiers; Stability analysis; AC system; PFC rectifier; feedback control; stabilization; voltage-source-rectifier (VSR);
Conference_Titel :
Industry Applications Society Annual Meeting, 2013 IEEE
Conference_Location :
Lake Buena Vista, FL
DOI :
10.1109/IAS.2013.6682524