Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method

Voltage source inverters (VSIs) are the most common type of inverter used in power electronic systems for distributed generation sources. In three-phase systems, using three-phase conversion to the synchronous reference frame, linear controllers can be easily used to control the inverter due to the...

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Main Authors: Mazharul Islam, Sadia Afrin, Suraia Akter Rakhi
Format: Article
Language:English
Published: Bilijipub publisher 2024-12-01
Series:Advances in Engineering and Intelligence Systems
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Online Access:https://aeis.bilijipub.com/article_212428_873764c59deda365be14807b78c0b056.pdf
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author Mazharul Islam
Sadia Afrin
Suraia Akter Rakhi
author_facet Mazharul Islam
Sadia Afrin
Suraia Akter Rakhi
author_sort Mazharul Islam
collection DOAJ
description Voltage source inverters (VSIs) are the most common type of inverter used in power electronic systems for distributed generation sources. In three-phase systems, using three-phase conversion to the synchronous reference frame, linear controllers can be easily used to control the inverter due to the conversion of AC parameters in the synchronous frame to dc components. The design of linear controllers in single-phase systems is often difficult because of the oscillating nature of these systems. In some cases, single-phase conversion to synchronous frame is used, which has its problems, such as delays in converting single-phase values to two-phase. To tackle this problem, proportional-resonance (PR) instruments can be used at a specific resonant frequency. However, for single-phase systems where all the harmonies are present in the inverter current, an unlimited number of PR instruments are required. Therefore, not all harmonies can be controlled in this way. To overcome this, a iterative control system can be used. The control method presented in this paper uses delay intervals with positive feedback. Under these conditions, the control gain in the dynamic model of the iterative control system is very high for all harmonies and allows tracking the reference current and voltage values with a zero steady-state error in all harmonies. In addition, the performance of the iterative control system in the face of single-phase systems will be very favorable.
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issn 2821-0263
language English
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publisher Bilijipub publisher
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spelling doaj-art-3ab6e77bbc794c6493688041e0f4b9502025-02-12T08:48:16ZengBilijipub publisherAdvances in Engineering and Intelligence Systems2821-02632024-12-0100304173210.22034/aeis.2024.482295.1236212428Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control MethodMazharul Islam0Sadia Afrin1Suraia Akter Rakhi2Department of Chemistry, Shahjalal University of Science & Technology, Sylhet, BangladeshDepartment of Chemistry, National University, BangladeshDepartment of Chemistry, Khulna University of Engineering and Technology, BangladeshVoltage source inverters (VSIs) are the most common type of inverter used in power electronic systems for distributed generation sources. In three-phase systems, using three-phase conversion to the synchronous reference frame, linear controllers can be easily used to control the inverter due to the conversion of AC parameters in the synchronous frame to dc components. The design of linear controllers in single-phase systems is often difficult because of the oscillating nature of these systems. In some cases, single-phase conversion to synchronous frame is used, which has its problems, such as delays in converting single-phase values to two-phase. To tackle this problem, proportional-resonance (PR) instruments can be used at a specific resonant frequency. However, for single-phase systems where all the harmonies are present in the inverter current, an unlimited number of PR instruments are required. Therefore, not all harmonies can be controlled in this way. To overcome this, a iterative control system can be used. The control method presented in this paper uses delay intervals with positive feedback. Under these conditions, the control gain in the dynamic model of the iterative control system is very high for all harmonies and allows tracking the reference current and voltage values with a zero steady-state error in all harmonies. In addition, the performance of the iterative control system in the face of single-phase systems will be very favorable.https://aeis.bilijipub.com/article_212428_873764c59deda365be14807b78c0b056.pdfmicrogridinverter systemsiterative controlsingle-phasegrid-connected
spellingShingle Mazharul Islam
Sadia Afrin
Suraia Akter Rakhi
Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method
Advances in Engineering and Intelligence Systems
microgrid
inverter systems
iterative control
single-phase
grid-connected
title Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method
title_full Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method
title_fullStr Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method
title_full_unstemmed Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method
title_short Improving the Quality of Single-Phase Grid-Connected Solar Systems Using Iterative Control Method
title_sort improving the quality of single phase grid connected solar systems using iterative control method
topic microgrid
inverter systems
iterative control
single-phase
grid-connected
url https://aeis.bilijipub.com/article_212428_873764c59deda365be14807b78c0b056.pdf
work_keys_str_mv AT mazharulislam improvingthequalityofsinglephasegridconnectedsolarsystemsusingiterativecontrolmethod
AT sadiaafrin improvingthequalityofsinglephasegridconnectedsolarsystemsusingiterativecontrolmethod
AT suraiaakterrakhi improvingthequalityofsinglephasegridconnectedsolarsystemsusingiterativecontrolmethod