In this paper, a novel distributed control algorithm for current sharing and voltage regulation in DC microgrids is proposed. The DC microgrid is composed of several distributed generation units, including buck converters and current loads. The considered model permits an arbitrary network topology and is affected by an unknown load demand and modeling uncertainties. The proposed control strategy exploits a communication network to achieve proportional current sharing using a consensus-like algorithm. Voltage regulation is achieved by constraining the system to a suitable manifold. Two robust control strategies of sliding mode type are developed to reach the desired manifold in a finite time. The proposed control scheme is formally analyzed, proving the achievement of proportional current sharing, while guaranteeing that the weighted average voltage of the microgrid is identical to the weighted average of the voltage references.

A Robust Consensus Algorithm for Current Sharing and Voltage Regulation in DC Microgrids

Cucuzzella, Michele;Ferrara, Antonella;
2019-01-01

Abstract

In this paper, a novel distributed control algorithm for current sharing and voltage regulation in DC microgrids is proposed. The DC microgrid is composed of several distributed generation units, including buck converters and current loads. The considered model permits an arbitrary network topology and is affected by an unknown load demand and modeling uncertainties. The proposed control strategy exploits a communication network to achieve proportional current sharing using a consensus-like algorithm. Voltage regulation is achieved by constraining the system to a suitable manifold. Two robust control strategies of sliding mode type are developed to reach the desired manifold in a finite time. The proposed control scheme is formally analyzed, proving the achievement of proportional current sharing, while guaranteeing that the weighted average voltage of the microgrid is identical to the weighted average of the voltage references.
2019
AI, Robotics & Automatic Control
Esperti anonimi
Inglese
Internazionale
STAMPA
27
4
1583
1595
13
Il paper ha ricevuto il "2020 IEEE Transactions on Control Systems Technology Outstanding Paper Award", uno degli Award della Control Systems Society della IEEE. This paper received the "2020 IEEE Transactions on Control Systems Technology Outstanding Paper Award," one of the IEEE Control Systems Society Awards.
Current sharing; DC microgrids; Load modeling; Manifolds; Microgrids; Network topology; Robustness; sliding mode (SM) control; Steady-state; uncertain systems; Voltage control; voltage regulation; Control and Systems Engineering; Electrical and Electronic Engineering
https://ieeexplore.ieee.org/document/8362802
6
info:eu-repo/semantics/article
262
Cucuzzella, Michele; Trip, Sebastian; De Persis, Claudio; Cheng, Xiaodong; Ferrara, Antonella; van der Schaft, Arjan
1 Contributo su Rivista::1.1 Articolo in rivista
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1237706
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