High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter

ABSTRACTThe boosting converters integrated with inverters are widespread use in many applications under transformerless inverter titles, including powered vehicles, PV systems, fuel cells systems and so on. Reliability, quality, maintainability, and reduction in size are important requirements in th...

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Main Authors: Oday saad, Jasim Hussain
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2022-08-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_174475_6ecba0449483738005b6bf8ef92cd38a.pdf
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author Oday saad
Jasim Hussain
author_facet Oday saad
Jasim Hussain
author_sort Oday saad
collection DOAJ
description ABSTRACTThe boosting converters integrated with inverters are widespread use in many applications under transformerless inverter titles, including powered vehicles, PV systems, fuel cells systems and so on. Reliability, quality, maintainability, and reduction in size are important requirements in the energy conversion process. The multi-phase boost converter can be adopted as a good solution with high power applications. The multi-phase boost enhanced by clamping capacitor structure is providing low ripple, high gain and evident improvement in the efficiency when compared to the conventional converters. This paper investigates the transformerless inverter based on a capacitor clamping multi-phase boost converter. High gain proposed architectures are being designed to step-up voltage. The converter features a high voltage gain offers additional solutions based on the capacitor clamping structure. The proposed architectures are being designed to optimize the gaining in popularity as they are increasing the voltage gain and the efficiency and mitigate the switching frequency effect.The investigation of validation performance was introduced through the steady-state analysis and operation. The operation modes and mathematical analysis are presented. To validate the performance in terms of input and output ripple and values, the converters were tested using MATLAB / SIMULINK. The results supported the mathematical analysis. The voltage gains increased, reduce of ripple in input current and the output voltage is significantly detected. The switches stresses at the converter side are One-third of the output voltage.
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spelling doaj.art-27e6592e8f864c41bed7e4c7b27651552024-01-31T14:27:53ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582022-08-014081071108110.30684/etj.2022.131337.1028174475High gain transformer-less inverter based-on capacitor clamping multi-phase boost converterOday saad0Jasim Hussain1Department of Electrical Engineering, University of Technology, IraqDepartment of Electrical Engineering, University of Technology, Iraq-Baghdad.ABSTRACTThe boosting converters integrated with inverters are widespread use in many applications under transformerless inverter titles, including powered vehicles, PV systems, fuel cells systems and so on. Reliability, quality, maintainability, and reduction in size are important requirements in the energy conversion process. The multi-phase boost converter can be adopted as a good solution with high power applications. The multi-phase boost enhanced by clamping capacitor structure is providing low ripple, high gain and evident improvement in the efficiency when compared to the conventional converters. This paper investigates the transformerless inverter based on a capacitor clamping multi-phase boost converter. High gain proposed architectures are being designed to step-up voltage. The converter features a high voltage gain offers additional solutions based on the capacitor clamping structure. The proposed architectures are being designed to optimize the gaining in popularity as they are increasing the voltage gain and the efficiency and mitigate the switching frequency effect.The investigation of validation performance was introduced through the steady-state analysis and operation. The operation modes and mathematical analysis are presented. To validate the performance in terms of input and output ripple and values, the converters were tested using MATLAB / SIMULINK. The results supported the mathematical analysis. The voltage gains increased, reduce of ripple in input current and the output voltage is significantly detected. The switches stresses at the converter side are One-third of the output voltage.https://etj.uotechnology.edu.iq/article_174475_6ecba0449483738005b6bf8ef92cd38a.pdfdc converter,,,،,؛voltage gain,,,،,؛switches voltage stress,,,،,؛clamper circuit,,,،,؛voltage ripple
spellingShingle Oday saad
Jasim Hussain
High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter
Engineering and Technology Journal
dc converter,,
,،,؛voltage gain,,
,،,؛switches voltage stress,,
,،,؛clamper circuit,,
,،,؛voltage ripple
title High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter
title_full High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter
title_fullStr High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter
title_full_unstemmed High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter
title_short High gain transformer-less inverter based-on capacitor clamping multi-phase boost converter
title_sort high gain transformer less inverter based on capacitor clamping multi phase boost converter
topic dc converter,,
,،,؛voltage gain,,
,،,؛switches voltage stress,,
,،,؛clamper circuit,,
,،,؛voltage ripple
url https://etj.uotechnology.edu.iq/article_174475_6ecba0449483738005b6bf8ef92cd38a.pdf
work_keys_str_mv AT odaysaad highgaintransformerlessinverterbasedoncapacitorclampingmultiphaseboostconverter
AT jasimhussain highgaintransformerlessinverterbasedoncapacitorclampingmultiphaseboostconverter