Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/9364
Title: Modeling of efficient control strategies for LCC-HVDC systems: A case study of Matiari–Lahore HVDC power transmission line
Authors: Ahmed, Adeel 
Khan, Danish 
Khan, Ahmed Muddassir 
Mustafa, Muhammad Umair 
Panjwani, Manoj Kumar 
Hanan, Muhammad 
Agyekum, Ephraim Bonah 
Uhunamure, Solomon Eghosa 
Edokpayi, Joshua Nosa 
Keywords: High voltage direct current (HVDC);line commutated converter (LCC);commutation failure;transient overvoltage (TOV);power transmission line
Issue Date: 2022
Publisher: MDPI
Source: Ahmed, A., Khan, D., Khan, A. M. et al. 2022. Modeling of efficient control strategies for LCC-HVDC systems: A case study of Matiari–Lahore HVDC power transmission line. Sensors, 22: 2793. [https://doi.org/ 10.3390/s22072793]
Journal: Sensors 
Abstract: With the recent development in power electronic devices, HVDC (High Voltage Direct Current) systems have been recognized as the most prominent solution to transmit electric power economically. Today, several HVDC projects have been implemented physically. The conventional HVDC systems use grid commutation converters, and its commutation relies on an AC system for the provision of voltage. Due to this reason, there are possibilities of commutation failure during fault. Furthermore, once the DC (Direct Current) system power is interrupted momentarily, the reversal of work power is likely to cause transient over-voltage, which will endanger the safety of power grid operation. Hence, it is necessary to study the commutation failure and transient overvoltage issues. To tackle the above issues, in this paper, the dynamic and transient characteristics of Pakistan’s first HVDC project, i.e., the Matiari–Lahore ±660 kV transmission line has been analyzed in an electromagnetic transient model of PSCAD/EMTDC. Based on the characteristics of the DC and the off-angle after the failure, a new control strategy has been proposed. The HVDC system along with its proposed control strategy has been tested under various operating conditions. The proposed controller increases the speed of fault detection, reduces the drop of AC voltage and DC and suppresses the commutation failure probability of LCC-HVDC (line commutated converter- high voltage direct current).
URI: http://hdl.handle.net/11189/9364
ISSN: 1424-8220
DOI: https://doi.org/ 10.3390/s22072793
Appears in Collections:Eng - Journal articles (DHET subsidised)

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