Current control loop of 3-phase grid-connected inverter
This paper presents a comparative study of current control loop in 3-phase inverter which is used to control the active and reactive output power. Generally, current control loop, power control loop and phase lock-loop are the conventional parameters that can be found in an inverter system controlle...
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my.uniten.dspace-301932023-12-29T15:45:24Z Current control loop of 3-phase grid-connected inverter Jabbar A.F. Mansor M. 57190137793 6701749037 Linear control systems Three term control systems Comparative studies Current control loop Current control techniques Grid connected inverters Grid connected systems Inverter system Linear controls Power control loops comparative study control system parameterization power generation Proportional control systems This paper presents a comparative study of current control loop in 3-phase inverter which is used to control the active and reactive output power. Generally, current control loop, power control loop and phase lock-loop are the conventional parameters that can be found in an inverter system controlled by the conventional linear control type, for instance proportional (P), integral (I) and derivative (D). If the grid remains stable throughout the day, PID control can be use. However variation of magnitude, frequency, voltage dips, transient, and other related power quality issues occur in a 3-phase grid often affects the control loop. This paper aims to provide an overall review on the available current control techniques used in grid connected system. � Published under licence by IOP Publishing Ltd. Final 2023-12-29T07:45:24Z 2023-12-29T07:45:24Z 2013 Conference paper 10.1088/1755-1315/16/1/012069 2-s2.0-84881106522 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84881106522&doi=10.1088%2f1755-1315%2f16%2f1%2f012069&partnerID=40&md5=10ecbba557584010078800e3a72ac467 https://irepository.uniten.edu.my/handle/123456789/30193 16 1 12069 Institute of Physics Publishing Scopus |
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Linear control systems Three term control systems Comparative studies Current control loop Current control techniques Grid connected inverters Grid connected systems Inverter system Linear controls Power control loops comparative study control system parameterization power generation Proportional control systems |
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Linear control systems Three term control systems Comparative studies Current control loop Current control techniques Grid connected inverters Grid connected systems Inverter system Linear controls Power control loops comparative study control system parameterization power generation Proportional control systems Jabbar A.F. Mansor M. Current control loop of 3-phase grid-connected inverter |
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This paper presents a comparative study of current control loop in 3-phase inverter which is used to control the active and reactive output power. Generally, current control loop, power control loop and phase lock-loop are the conventional parameters that can be found in an inverter system controlled by the conventional linear control type, for instance proportional (P), integral (I) and derivative (D). If the grid remains stable throughout the day, PID control can be use. However variation of magnitude, frequency, voltage dips, transient, and other related power quality issues occur in a 3-phase grid often affects the control loop. This paper aims to provide an overall review on the available current control techniques used in grid connected system. � Published under licence by IOP Publishing Ltd. |
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57190137793 |
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57190137793 Jabbar A.F. Mansor M. |
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Conference paper |
author |
Jabbar A.F. Mansor M. |
author_sort |
Jabbar A.F. |
title |
Current control loop of 3-phase grid-connected inverter |
title_short |
Current control loop of 3-phase grid-connected inverter |
title_full |
Current control loop of 3-phase grid-connected inverter |
title_fullStr |
Current control loop of 3-phase grid-connected inverter |
title_full_unstemmed |
Current control loop of 3-phase grid-connected inverter |
title_sort |
current control loop of 3-phase grid-connected inverter |
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Institute of Physics Publishing |
publishDate |
2023 |
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1806427617702707200 |