2020
DOI: 10.1049/iet-gtd.2019.0534
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Simultaneous reactive power sharing and voltage regulation in an autonomous networked microgrid

Abstract: Decentralized droop-like control method is the most favourable control system for power converter-based microgrids (MGs). In conventional V-Q droop loops, reactive power sharing is used as a means of voltage regulation to prevent currents from circulating among distributed generation units. However, since the voltage is not a global variable, reactive power sharing is not implemented precisely, and thus converters may be exposed to overcurrent conditions and the stability of the MGs is put at risk. Besides, th… Show more

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Cited by 18 publications
(11 citation statements)
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“…Loads of the DC microgrid are linked to the wider grid through a bus. Offshore wind turbines with voltage source converters (VSCs) installed [17], [18] may improve the reliability of the power system on oil and gas installations [19].…”
Section: Modelingmentioning
confidence: 99%
“…Loads of the DC microgrid are linked to the wider grid through a bus. Offshore wind turbines with voltage source converters (VSCs) installed [17], [18] may improve the reliability of the power system on oil and gas installations [19].…”
Section: Modelingmentioning
confidence: 99%
“…However, droop control faces several challenges [24], [181]. The main problem with the droop-controlled grid-forming VSCs is that they display poor dynamics in following the reference values to deliver pre-set active and reactive power [182].…”
Section: Slack Bus Realizationmentioning
confidence: 99%
“…However, droop control faces several challenges [31], [170]. The main problem with the droop-controlled grid-forming VSCs is that they display poor dynamics in following the reference values to deliver pre-set active and reactive power [171].…”
Section: Slack Bus Realizationmentioning
confidence: 99%