DocumentCode :
108913
Title :
A Low-Voltage Ride-Through Method With Transformer Flux Compensation Capability of Renewable Power Grid-Side Converters
Author :
Shih-feng Chou ; Chia-Tse Lee ; Hsin-Cheng Ko ; Po-Tai Cheng
Author_Institution :
Delta Electron., Inc., Taipei, Taiwan
Volume :
29
Issue :
4
fYear :
2014
fDate :
Apr-14
Firstpage :
1710
Lastpage :
1719
Abstract :
With the growing penetration of renewable energy resources, the grid operators place higher emphasis on their grid integration requirements. The low-voltage ride-through (LVRT) capability is one of the most important issues for maintaining the grid stability. This paper proposes a LVRT technique for effective utilization of the ampere capacity of the grid-connected converter to meet the LVRT requirement, and to reduce the potential post-sag inrush current of the transformer within the grid-connected converter system. This technique precisely manages the peak value of converter´s phase current while performing the transformer flux compensation and the current injection for full utilization of the ampere capacity without the risk of triggering the overcurrent protection. The operation principles of the proposed method is explained, and laboratory test results are presented for validation.
Keywords :
overcurrent protection; power convertors; power grids; power system stability; power transformers; LVRT capability; ampere capacity; current injection; grid integration requirements; grid operators; grid stability; grid-connected converter; low-voltage ride-through method; overcurrent protection; phase current; post-sag inrush current; renewable energy resources; renewable power grid-side converters; transformer flux compensation capability; Distributed energy resources (DERs); flux compensation; grid-connected converter; inrush current; low-voltage ride-through (LVRT);
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2013.2266511
Filename :
6542026
Link To Document :
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