Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve

Abstract The standardised design and operational reliability enhancement of the flexible DC converter valve are impending with the construction of high shares of renewables and power electronics power system. A power frequency magnetic field calculation model able to obtain the electromagnetic distu...

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Main Authors: Lei Qi, Muxue Wang, Xiangyu Zhang, Hong Shen, Hongyu Wang, Chongqing Jiao
Format: Article
Language:English
Published: Wiley 2023-02-01
Series:High Voltage
Online Access:https://doi.org/10.1049/hve2.12227
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author Lei Qi
Muxue Wang
Xiangyu Zhang
Hong Shen
Hongyu Wang
Chongqing Jiao
author_facet Lei Qi
Muxue Wang
Xiangyu Zhang
Hong Shen
Hongyu Wang
Chongqing Jiao
author_sort Lei Qi
collection DOAJ
description Abstract The standardised design and operational reliability enhancement of the flexible DC converter valve are impending with the construction of high shares of renewables and power electronics power system. A power frequency magnetic field calculation model able to obtain the electromagnetic disturbance at the submodule (SM) drive board during normal operation of a flexible DC converter valve is presented. Hundreds of SMs with complex structures in a converter valve tower are simplified by the equivalent to the line current to fulfil calculation accuracy requirements. In addition, a random function is employed to simulate the non‐sequential switching process of the SMs. By comparing the calculated results with the measured data obtained from the SM equivalent operation experiment of 2200 V/2150 A, the validity of the calculation model is confirmed. According to the final calculations, the influence of non‐sequential switching cannot be ignored when recognising the time‐domain distribution features of the power frequency magnetic field of the drive board. However, engineering design can be guided only by the power frequency magnetic field intensity of the drive board calculated based on SM’s full removal in the valve tower.
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spelling doaj.art-2c2d260f530543c396d43543b43cd16c2023-02-21T10:25:25ZengWileyHigh Voltage2397-72642023-02-01819110110.1049/hve2.12227Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valveLei Qi0Muxue Wang1Xiangyu Zhang2Hong Shen3Hongyu Wang4Chongqing Jiao5State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing ChinaAbstract The standardised design and operational reliability enhancement of the flexible DC converter valve are impending with the construction of high shares of renewables and power electronics power system. A power frequency magnetic field calculation model able to obtain the electromagnetic disturbance at the submodule (SM) drive board during normal operation of a flexible DC converter valve is presented. Hundreds of SMs with complex structures in a converter valve tower are simplified by the equivalent to the line current to fulfil calculation accuracy requirements. In addition, a random function is employed to simulate the non‐sequential switching process of the SMs. By comparing the calculated results with the measured data obtained from the SM equivalent operation experiment of 2200 V/2150 A, the validity of the calculation model is confirmed. According to the final calculations, the influence of non‐sequential switching cannot be ignored when recognising the time‐domain distribution features of the power frequency magnetic field of the drive board. However, engineering design can be guided only by the power frequency magnetic field intensity of the drive board calculated based on SM’s full removal in the valve tower.https://doi.org/10.1049/hve2.12227
spellingShingle Lei Qi
Muxue Wang
Xiangyu Zhang
Hong Shen
Hongyu Wang
Chongqing Jiao
Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve
High Voltage
title Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve
title_full Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve
title_fullStr Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve
title_full_unstemmed Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve
title_short Analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current (MMC‐HVDC) converter valve
title_sort analysis for magnetic field disturbance of modular multilevel converter based high voltage direct current mmc hvdc converter valve
url https://doi.org/10.1049/hve2.12227
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AT xiangyuzhang analysisformagneticfielddisturbanceofmodularmultilevelconverterbasedhighvoltagedirectcurrentmmchvdcconvertervalve
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AT hongyuwang analysisformagneticfielddisturbanceofmodularmultilevelconverterbasedhighvoltagedirectcurrentmmchvdcconvertervalve
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