Title :
A novel grid impedance estimation technique based on adaptive virtual resistance control loop applied to distributed generation inverters
Author :
Ghzaiel, Walid ; Ghorbal, Manel Jebali-Ben ; Slama-Belkhodja, Ilhem ; Guerrero, Josep M.
Author_Institution :
ENIT-L.S.E., Univ. de Tunis El Manar, Tunis, Tunisia
Abstract :
The penetration of the distributed power generation systems (DPGSs) based on renewable sources (PV, WT) is strongly dependent on the quality of the power injected to the utility grid. However, the grid impedance variation, mainly caused by grid faults somewhere in the electric network, can degrade the power quality and even damage some sensitive loads connected at the point of the common coupling (PCC). This paper presents detection-estimation method of the grid impedance variation. This estimation tehnique aims to improve the dynamic of the distributed generation (DG) interfacing inverter control and to take the decision of either keep the DG connected, or disconnect it from the utility grid. The proposed method is based on a fast and easy grid fault detection method. A virtual damping resistance is used to drive the system to the resonance in order to extract the grid impedance parameters, both resistive and inductive parts, using resonant filter frequency determination. Theoretical analysis and simulation results are presented to validate the proposed method.
Keywords :
distributed power generation; invertors; power generation faults; power grids; renewable energy sources; adaptive virtual resistance control loop; detection-estimation method; distributed generation inverters; distributed power generation systems; electric network; grid fault detection; grid faults; grid impedance estimation technique; grid impedance variation; inverter control; point of the common coupling; power quality; renewable sources; resonant filter frequency determination; virtual damping resistance; Estimation; Frequency conversion; Impedance; Inverters; Resistance; Resonant frequency; Time-frequency analysis; Active damping; Distributed power; Estimation technique; Excitation system;
Conference_Titel :
Power Electronics and Applications (EPE), 2013 15th European Conference on
Conference_Location :
Lille
DOI :
10.1109/EPE.2013.6631966