Unified Impedance Model of Grid-Connected Voltage-Source Converters

Xiongfei Wang, Lennart Harnefors, Frede Blaabjerg

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Abstract

This paper proposes a unified impedance model of grid-connected voltage-source converters for analyzing dynamic influences of the Phase-Locked Loop (PLL) and current control. The mathematical relations between the impedance models in the different domains are first explicitly revealed by means of complex transfer functions and complex space vectors. A stationary (αβ-) frame impedance model is then proposed, which not only predicts the stability impact of the PLL, but reveals also its frequency coupling effect explicitly. Furthermore, the impedance shaping effect of the PLL on the current control in the rotating ( dq -) frame and the stationary (αβ-) frame are structurally characterized. The frequency-domain case studies on a three-phase grid-connected converter are next presented, and subsequently validated in time-domain simulations and experimental tests. The close correlations between the measured results and theoretical analysis confirm the effectiveness of the stationary-frame impedance model.
Original languageEnglish
Article number7913725
JournalI E E E Transactions on Power Electronics
Volume33
Issue number2
Pages (from-to)1775 - 1787
Number of pages13
ISSN0885-8993
DOIs
Publication statusPublished - Feb 2018

Keywords

  • Voltage-source converters
  • Grid
  • Stability
  • Phase-locked loop
  • Impedance model
  • impedance model
  • voltage-source converters (VSCs)
  • phase-locked loop (PLL)
  • stability

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