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Journal ArticleDOI

Distributed Robust Finite-Time Secondary Voltage and Frequency Control of Islanded Microgrids

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TLDR
In this article, a distributed cooperative secondary control for both voltage and frequency restoration of an islanded microgrid with droop-controlled inverter-based distributed generators (DGs) is presented.
Abstract
This paper presents a distributed, robust, finite-time secondary control for both voltage and frequency restoration of an islanded microgrid with droop-controlled inverter-based distributed generators (DGs). The distributed cooperative secondary control is fully distributed (i.e., uses only the information of neighboring DGs that can communicate with one another through a sparse communication network). In contrast to existing distributed methods that require a detailed model of the system (such as line impedances, loads, other DG units parameters, and even the microgrid configuration, which are practically unknown), the proposed protocols are synthesized by considering the unmodeled dynamics, unknown disturbances, and uncertainties in their models. The other novel idea in this paper is that the consensus-based distributed controllers restore the islanded microgrid's voltage magnitudes and frequency to their reference values for all DGs within finite time, irrespective of parametric uncertainties, unmodeled dynamics, and disturbances, while providing accurate real-power sharing. Moreover, the proposed method considers the coupling between the frequency and voltage of the islanded microgrid. Unlike conventional distributed controllers, the proposed approach quickly reaches consensus and exhibits a more accurate robust performance. Finally, we verify the proposed control strategy's performance using the MATLAB/SimPowerSystems toolbox.

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Proceedings ArticleDOI

Robust Distributed Finite-time Secondary Frequency Control of Islanded AC Microgrids With Event-Triggered Mechanism

TL;DR: In this paper , a robust distributed secondary control scheme under directed communication graphs is proposed, which can restore frequency to the nominal value and achieve precise active power sharing in finite-time.
Proceedings ArticleDOI

A Distributed Finite-Time Control for Islanded AC Microgrid with Communication Delays

TL;DR: In this paper , a novel distributed finite-time secondary control is proposed for both accurate voltage/frequency restoration and power sharing of the islanded AC microgrid with droop-controlled inverter-based distributed generators (DGs).
Journal ArticleDOI

Modelling the steady-state of secondary control in islanded AC microgrids

TL;DR: In this article , a power flow method for calculating the steady state of secondary control in islanded MGs is proposed, which has four distinct features: a) generalized implementation in several communication strategies e.g., centralized, decentralized, consensus, distributed averaging, precise simulation of communication links and proportional-integral (PI) controllers, low computation time, and accurate three-phase network representation.
References
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Journal ArticleDOI

Hierarchical control of droop-controlled DC and AC microgrids — a general approach towards standardization

TL;DR: The hierarchical control derived from ISA-95 and electrical dispatching standards to endow smartness and flexibility to MGs is presented and results are provided to show the feasibility of the proposed approach.
Journal ArticleDOI

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

TL;DR: 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.
Journal ArticleDOI

Advanced Control Architectures for Intelligent Microgrids—Part I: Decentralized and Hierarchical Control

TL;DR: Decentralized, distributed, and hierarchical control of grid-connected and islanded microgrids that mimic the behavior of the mains grid is reviewed.
Journal ArticleDOI

Hierarchical Structure of Microgrids Control System

TL;DR: This paper reviews the status of hierarchical control strategies applied to microgrids and discusses the future trends.
Book

Cooperative Control of Dynamical Systems: Applications to Autonomous Vehicles

TL;DR: In this paper, a new framework based on matrix theory is proposed to analyze and design cooperative controls for a group of individual dynamical systems whose outputs are sensed by or communicated to others in an intermittent, dynamically changing, and local manner.
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