Transient Angle Stability Analysis of Grid-Connected Converters with the First-order Active Power Loop

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Abstract

As the increasing application of power electronic converters in electric power grids, the stability of grid-connected converters has become a major concern for reliable operations of the power grid. This paper analyzes the transient stability of grid-connected converters with the first-order active power loop. It points out that the conventional equal-area criterion, which has been widely used in the transient stability analysis of synchronous generators, may not apply to grid-connected converters, due to the different dynamic characteristics between converters and synchronous generators. To tackle this challenge, this paper employs the phase portrait to analyze the transient stability of power converters, and it is found that the better transient stability performance can be achieved if the grid-connected converters are controlled as the first-order nonlinear system. Simulations and experimental results are given to verify the effectiveness of the theoretical analysis.
OriginalsprogEngelsk
TitelProceedings of the 2018 IEEE Applied Power Electronics Conference and Exposition (APEC)
Antal sider6
UdgivelsesstedSan Antonio, TX, USA
ForlagIEEE Press
Publikationsdatomar. 2018
Sider3011-3016
ISBN (Trykt)978-1-5386-1181-4
ISBN (Elektronisk)978-1-5386-1180-7
DOI
StatusUdgivet - mar. 2018
Begivenhed33rd Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2018 - San Antonio, USA
Varighed: 4 mar. 20188 mar. 2018

Konference

Konference33rd Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2018
Land/OmrådeUSA
BySan Antonio
Periode04/03/201808/03/2018
SponsorIEEE Power Electronics Society (PELS), Industry Applications Society (IAS), Power Sources Manufacturers Association (PSMA)
NavnIEEE Applied Power Electronics Conference and Exposition (APEC)
ISSN2470-6647

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