Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic

The high-voltage direct current (HVDC) transmission system, which links the Gurun Substation of the National Electric Authority of Malaysia (Tenaga Nasional Berhad, TNB) with the Khlong Ngae Station of the Electricity Generating Authority of Thailand (EGAT), has been extensively researched to achiev...

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Main Authors: Chaichan Pothisarn, Atthapol Ngaopitakkul, Monthon Leelajindakrairerk, Natthanon Phannil, Sulee Bunjongjit, Surakit Thongsuk, Bancha Sreewirote
Format: Article
Language:English
Published: Hindawi Limited 2022-01-01
Series:Journal of Electrical and Computer Engineering
Online Access:http://dx.doi.org/10.1155/2022/1237997
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author Chaichan Pothisarn
Atthapol Ngaopitakkul
Monthon Leelajindakrairerk
Natthanon Phannil
Sulee Bunjongjit
Surakit Thongsuk
Bancha Sreewirote
author_facet Chaichan Pothisarn
Atthapol Ngaopitakkul
Monthon Leelajindakrairerk
Natthanon Phannil
Sulee Bunjongjit
Surakit Thongsuk
Bancha Sreewirote
author_sort Chaichan Pothisarn
collection DOAJ
description The high-voltage direct current (HVDC) transmission system, which links the Gurun Substation of the National Electric Authority of Malaysia (Tenaga Nasional Berhad, TNB) with the Khlong Ngae Station of the Electricity Generating Authority of Thailand (EGAT), has been extensively researched to achieve the highest quality because it is the largest of its kind in Thailand, and there is a plant to expand its transmission power. However, the impact on the whole system is under-researched. To study and develop this system, the HVDC transmission line is modelled with the MATLAB/Simulink program and a laboratory setup to investigate the effect of transmission line distance, load power, and voltage on power loss, voltage drop, and waveform. The HVDC transmission line parameters are calculated from the actual transmission line parameters and converted to the simulation model parameters using the per-unit method. The model is verified and tested by the simulation program before creating the experimental setup. The simulation and experimental results demonstrate the effects of changing system conditions via the three aspects. All the three conditions directly affect the HVDC transmission line; nevertheless, they affect each aspect differently.
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spelling doaj.art-53b4ed2700294b8da7a08e5c98e49d622024-11-02T05:28:46ZengHindawi LimitedJournal of Electrical and Computer Engineering2090-01552022-01-01202210.1155/2022/1237997Effects of Conditional Changes on High-Voltage Direct Current Transmission Line CharacteristicChaichan Pothisarn0Atthapol Ngaopitakkul1Monthon Leelajindakrairerk2Natthanon Phannil3Sulee Bunjongjit4Surakit Thongsuk5Bancha Sreewirote6School of EngineeringSchool of EngineeringSchool of EngineeringSchool of EngineeringFaculty of EngineeringFaculty of Industrial TechnologyFaculty of EngineeringThe high-voltage direct current (HVDC) transmission system, which links the Gurun Substation of the National Electric Authority of Malaysia (Tenaga Nasional Berhad, TNB) with the Khlong Ngae Station of the Electricity Generating Authority of Thailand (EGAT), has been extensively researched to achieve the highest quality because it is the largest of its kind in Thailand, and there is a plant to expand its transmission power. However, the impact on the whole system is under-researched. To study and develop this system, the HVDC transmission line is modelled with the MATLAB/Simulink program and a laboratory setup to investigate the effect of transmission line distance, load power, and voltage on power loss, voltage drop, and waveform. The HVDC transmission line parameters are calculated from the actual transmission line parameters and converted to the simulation model parameters using the per-unit method. The model is verified and tested by the simulation program before creating the experimental setup. The simulation and experimental results demonstrate the effects of changing system conditions via the three aspects. All the three conditions directly affect the HVDC transmission line; nevertheless, they affect each aspect differently.http://dx.doi.org/10.1155/2022/1237997
spellingShingle Chaichan Pothisarn
Atthapol Ngaopitakkul
Monthon Leelajindakrairerk
Natthanon Phannil
Sulee Bunjongjit
Surakit Thongsuk
Bancha Sreewirote
Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic
Journal of Electrical and Computer Engineering
title Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic
title_full Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic
title_fullStr Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic
title_full_unstemmed Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic
title_short Effects of Conditional Changes on High-Voltage Direct Current Transmission Line Characteristic
title_sort effects of conditional changes on high voltage direct current transmission line characteristic
url http://dx.doi.org/10.1155/2022/1237997
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AT monthonleelajindakrairerk effectsofconditionalchangesonhighvoltagedirectcurrenttransmissionlinecharacteristic
AT natthanonphannil effectsofconditionalchangesonhighvoltagedirectcurrenttransmissionlinecharacteristic
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