Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/5405
Title: Small signal modelling and stability analysis of an islanded AC microgrid with inverter interfaced DGs
Authors: Jain, Trapti
Keywords: Eigenvalues and eigenfunctions;Electric inverters;Electric load forecasting;Electric rectifiers;Linearization;Smart power grids;State space methods;Ac microgrid;Constant power load;Impedance loads;Reference frame;Resistive loads;Small-signal modelling;Stability analysis;State - space models;Electric power distribution
Issue Date: 2014
Publisher: Institute of Electrical and Electronics Engineers Inc.
Citation: Raju, P. E. S. N., & Jain, T. (2014). Small signal modelling and stability analysis of an islanded AC microgrid with inverter interfaced DGs. Paper presented at the 2014 International Conference on Smart Electric Grid, ISEG 2014, doi:10.1109/ISEG.2014.7005388
Abstract: This paper presents a systematic way of developing a full dynamical linearized small signal state space model and stability analysis of an islanded AC microgrid with low inertial inverter interfaced DGs represented in the synchronous (DQ) reference frame. This AC microgrid accommodates four low inertial inverter interfaced DGs of unequal power ratings connected to each other through three lines and four loads such as resistive load, impedance load, constant power load and rectifier interfaced active load simultaneously, but connected at different nodes. To obtain the model systematically the whole AC microgrid system has been divided into the three sub-modules such as inverter sub-module, network sub-module and load sub-module. All the sub-modules are combined together on a common reference frame. The resulting state matrix of the islanded AC microgrid system has been utilized to obtain the eigenvalues (termed 'modes'. © 2014 IEEE.
URI: https://doi.org/10.1109/ISEG.2014.7005388
https://dspace.iiti.ac.in/handle/123456789/5405
ISBN: 9781479941032
Type of Material: Conference Paper
Appears in Collections:Department of Electrical Engineering

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