Rapid Impedance Estimation Algorithm for Mitigation of Synchronization Instability of Paralleled Converters under Grid Faults

Mads Graungaard Taul, Robert Eric Betz, Frede Blaabjerg

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6 Citationer (Scopus)

Abstract

Paralleled grid-connected converters operated as grid-following structures are vulnerable to transient synchronization instability during grid faults. This paper mathematically describes the instability phenomenon of paralleled converters and why it is more pronounced than for single-converter operation. Based on this model, instability can be averted by modifying each converter current reference depending on the external network impedance where asymptotic stability is proven. A rapid impedance estimation algorithm is presented, which can extract the network impedance based on the disturbance of the grid fault. This estimation is used to accurately adjust the converter current references in order to guarantee stability of all paralleled converters for any severity of the grid fault. The proposed control structure is verified in a detailed simulation study and through experimental tests, which demonstrate its potential and robustness.
OriginalsprogEngelsk
TitelProceedings of the 2020 22nd European Conference on Power Electronics and Applications (EPE'20 ECCE Europe)
Antal sider10
ForlagIEEE Press
Publikationsdatosep. 2020
Artikelnummer9215866
ISBN (Elektronisk)978-9-0758-1536-8
DOI
StatusUdgivet - sep. 2020
BegivenhedEPE'20 ECCE Europe: 22nd European Conference on Power Electronics and Applications - Lyon, Frankrig
Varighed: 7 sep. 202011 sep. 2020

Konference

KonferenceEPE'20 ECCE Europe: 22nd European Conference on Power Electronics and Applications
Land/OmrådeFrankrig
ByLyon
Periode07/09/202011/09/2020

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