A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters

This paper presents a selective harmonic-based pilot protection scheme for detecting faults happened in the DC transmission section of VSC-MTDC grids with pulse width modulation (PWM) voltage source converters (VSCs). When a DC fault occurs in VSC-MTDC grids with PWM converters, first carrier freque...

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Main Authors: Mani Ashouri, Filipe Faria da Silva, Claus Leth Bak
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/12/6/1010
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author Mani Ashouri
Filipe Faria da Silva
Claus Leth Bak
author_facet Mani Ashouri
Filipe Faria da Silva
Claus Leth Bak
author_sort Mani Ashouri
collection DOAJ
description This paper presents a selective harmonic-based pilot protection scheme for detecting faults happened in the DC transmission section of VSC-MTDC grids with pulse width modulation (PWM) voltage source converters (VSCs). When a DC fault occurs in VSC-MTDC grids with PWM converters, first carrier frequency harmonic (FCFH) currents will be generated by all VSCs through the grid. FCFH currents have different flowing directions depending on the characteristics and the location of the fault. According to the characteristics of the existing FCFH in the fault currents, a selective pilot protection algorithm is designed for VSC-MTDC grids. Considering the internal and external DC transmission faults for specific zones, and the circulating flow of FCFH current in the DC link capacitors, the relays cannot detect FCFH currents for external faults, while for the internal faults, FCFH currents are clearly detected. To design the selective protection algorithm, Hilbert-Huang transform (HHT) is used to detect the instantaneous frequency and the instantaneous amplitude of the high frequency intrinsic mode function (IMF)s, which are extracted from the fault current waves. Multiple faults with different characteristics are applied to CIGRE DCS-2 VSC-MTDC grid with two-level and three-level VSCs modeled in PSCAD, and the HHT-based selective protection scheme is designed in MATLAB. According to the results, the proposed algorithm can truly discriminate between internal and external faults.
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spelling doaj.art-e1e7f5c8144642ce8afc55ee5bcc053c2022-12-22T04:28:16ZengMDPI AGEnergies1996-10732019-03-01126101010.3390/en12061010en12061010A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM ConvertersMani Ashouri0Filipe Faria da Silva1Claus Leth Bak2Department of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkDepartment of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkDepartment of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkThis paper presents a selective harmonic-based pilot protection scheme for detecting faults happened in the DC transmission section of VSC-MTDC grids with pulse width modulation (PWM) voltage source converters (VSCs). When a DC fault occurs in VSC-MTDC grids with PWM converters, first carrier frequency harmonic (FCFH) currents will be generated by all VSCs through the grid. FCFH currents have different flowing directions depending on the characteristics and the location of the fault. According to the characteristics of the existing FCFH in the fault currents, a selective pilot protection algorithm is designed for VSC-MTDC grids. Considering the internal and external DC transmission faults for specific zones, and the circulating flow of FCFH current in the DC link capacitors, the relays cannot detect FCFH currents for external faults, while for the internal faults, FCFH currents are clearly detected. To design the selective protection algorithm, Hilbert-Huang transform (HHT) is used to detect the instantaneous frequency and the instantaneous amplitude of the high frequency intrinsic mode function (IMF)s, which are extracted from the fault current waves. Multiple faults with different characteristics are applied to CIGRE DCS-2 VSC-MTDC grid with two-level and three-level VSCs modeled in PSCAD, and the HHT-based selective protection scheme is designed in MATLAB. According to the results, the proposed algorithm can truly discriminate between internal and external faults.http://www.mdpi.com/1996-1073/12/6/1010fault detectionharmonicshilbert huang transformHVDCprotectionpulse with modulationVSC-MTDC
spellingShingle Mani Ashouri
Filipe Faria da Silva
Claus Leth Bak
A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters
Energies
fault detection
harmonics
hilbert huang transform
HVDC
protection
pulse with modulation
VSC-MTDC
title A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters
title_full A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters
title_fullStr A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters
title_full_unstemmed A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters
title_short A Harmonic Based Pilot Protection Scheme for VSC-MTDC Grids with PWM Converters
title_sort harmonic based pilot protection scheme for vsc mtdc grids with pwm converters
topic fault detection
harmonics
hilbert huang transform
HVDC
protection
pulse with modulation
VSC-MTDC
url http://www.mdpi.com/1996-1073/12/6/1010
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