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Journal ArticleDOI

Modeling, Analysis and Testing of Autonomous Operation of an Inverter-Based Microgrid

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TLDR
In this paper, the authors developed a model for autonomous operation of inverter-based micro-grids, where each sub-module is modeled in state-space form and all are combined together on a common reference frame.
Abstract
The analysis of the small-signal stability of conventional power systems is well established, but for inverter based microgrids there is a need to establish how circuit and control features give rise to particular oscillatory modes and which of these have poor damping. This paper develops the modeling and analysis of autonomous operation of inverter-based microgrids. Each sub-module is modeled in state-space form and all are combined together on a common reference frame. The model captures the detail of the control loops of the inverter but not the switching action. Some inverter modes are found at relatively high frequency and so a full dynamic model of the network (rather than an algebraic impedance model) is used. The complete model is linearized around an operating point and the resulting system matrix is used to derive the eigenvalues. The eigenvalues (termed "modes") indicate the frequency and damping of oscillatory components in the transient response. A sensitivity analysis is also presented which helps identifying the origin of each of the modes and identify possible feedback signals for design of controllers to improve the system stability. With experience it is possible to simplify the model (reduce the order) if particular modes are not of interest as is the case with synchronous machine models. Experimental results from a microgrid of three 10-kW inverters are used to verify the results obtained from the model

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Citations
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Proceedings ArticleDOI

An improved control scheme based in droop characteristic control for microgrid converters

TL;DR: In this article, the effects of the decoupling of the cross-coupling terms when PI synchronous regulators are used in droop characteristic converter are analyzed, and three sub-modes for the island model, conventional droop mode, power quality mode and Sync mode are analyzed.
Journal ArticleDOI

A steady-state analysis tool for unbalanced islanded hybrid AC/DC microgrids

TL;DR: In this article, a power flow algorithm is proposed to accurately analyze the steady-state behavior of islanded hybrid ac/dc microgrids, where both the ac frequency and dc voltage are variable, coupled, and sensitive to the control schemes of the distributed generators and interlinking converters.
Journal ArticleDOI

A novel control strategy for the seamless transfer of microgrids based on disturbance observer

TL;DR: A novel seamless transfer strategy for microgrids that enables both grid-connected and islanding modes, with no need of forced controller switching between different controllers and with improved performance in both reference tracking and disturbance attenuation is presented.
Proceedings ArticleDOI

Analysis of droop controlled parallel inverters in islanded microgrids

TL;DR: In this article, a closed-loop model of the microgrid and an eigenvalues analysis that highlights how the system's parameters affect the stability of the network is presented. And the authors show that by means of a singular perturbation approach, the resulting reduced order system well approximate the original full order system.
Book ChapterDOI

Economic droop parameter selection for autonomous microgrids including wind turbines

TL;DR: In this paper, an algorithm for choosing the optimal droop parameters for islanded microgrids with wind generation in order to minimize the overall island generation costs in the absence of a microgrid central controller (MGCC) is presented.
References
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Book

Power System Stability and Control

P. Kundur
TL;DR: In this article, the authors present a model for the power system stability problem in modern power systems based on Synchronous Machine Theory and Modelling, and a model representation of the synchronous machine representation in stability studies.
Journal ArticleDOI

Control of parallel connected inverters in stand-alone AC supply systems

TL;DR: In this article, a control scheme for parallel-connected inverters in a standalone AC supply system is presented, which uses feedback of only those variables that can be measured locally at the inverter and does not need communication of control signals between the inverters.
Journal ArticleDOI

Operation of a multiagent system for microgrid control

TL;DR: In this paper, the authors present the operation of a multiagent system (MAS) for the control of a microgrid and a classical distributed algorithm based on the symmetrical assignment problem for the optimal energy exchange between the production units of the Microgrid and the local loads, as well the main grid.
Journal ArticleDOI

A wireless controller to enhance dynamic performance of parallel inverters in distributed generation systems

TL;DR: In this paper, a novel control strategy for parallel inverters of distributed generation units in an AC distribution system is presented, based on the droop control method, using only locally measurable feedback signals.
Journal ArticleDOI

Design, analysis, and real-time testing of a controller for multibus microgrid system

TL;DR: In this paper, the design and analysis of a unified controller for multibus microgrid system is presented, which includes inner voltage and current loops for regulating the three-phase grid-interfacing inverter, and external power control loops for controlling real and reactive power flow and for facilitating power sharing between the paralleled DG systems.
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