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Parameter estimation of chopper resistor in medium-voltage-direct-current during grid fault ride through

Authors
Lee, H.-J.Kim, J.-S.Kim, J.-C.
Issue Date
Dec-2018
Publisher
MDPI AG
Keywords
Chopper resistor; LVRT; MVDC; Optimal parameter estimation
Citation
Energies, v.11, no.12
Journal Title
Energies
Volume
11
Number
12
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/30885
DOI
10.3390/en11123480
ISSN
1996-1073
Abstract
Offshore wind farms with good wind quality are exponentially increasing. To take advantage of this, the offshore wind farms and the grid are connected using the MVDC. In the event of a grid fault, the traditional wind generators and the MVDC are disconnected from the grid fault to protect the devices. However, the wind generators and the MVDC must support the recovery of the grid fault because the disconnection of large capacity wind farms will cause a grid collapse. To prevent this problem, the LVRT requires maintaining the connection between the wind generators and the grid to contribute to the recovery of the grid fault. In this situation, the DC voltage of the MVDC rises due to the unbalanced power of the input and output. Several methods have been proposed to suppress the DC voltage rise of the MVDC. Among various methods, the CR is an effective method to suppress the DC voltage rise of the wind generators and the MVDC. However, the conventional CR designs only consider rated voltage and system capacity. Therefore, this paper proposes the parameter estimation of the CR considering the important factors. The proposed method is verified by PSCAD/EMTDC. ? 2018 by the authors.
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