Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator

This paper proposes a single-phase DC to AC inverter for ESG (electrostatic generators) that may be used in the household’s application. The electrostatic generators were developed a while ago and remained abandoned for a long time. Now, as the modern technology advanced, it’s time to utilize the ES...

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Main Authors: Motakabber S. M. A., Wahidur Rahman M., Ibn Ibrahimy Muhammad
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201818911010
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spelling doaj-359e53be0f6f4b0bbfa6a68597842a3a2021-02-02T00:48:48ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011891101010.1051/matecconf/201818911010matecconf_meamt2018_11010Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generatorMotakabber S. M. A.Wahidur Rahman M.Ibn Ibrahimy MuhammadThis paper proposes a single-phase DC to AC inverter for ESG (electrostatic generators) that may be used in the household’s application. The electrostatic generators were developed a while ago and remained abandoned for a long time. Now, as the modern technology advanced, it’s time to utilize the ESG to power generation. A pulse width modulation (PWM) based high voltage DC to AC inverter is a suitable system for converting the EGS high electrostatic DC voltage into standard 50Hz, 220V(rms) AC. The PWM technique is used to control the inverter switches to create a pulse width modulated bi-phase square wave signal. A lowpass LC filter has been utilized to remove the higher harmonic frequencies and which is capable to reduce the total harmonic distortion (THD) around 3.5%. The proposed model showed the overall system performance in terms of efficiency is 95%. To use ESG, this inverter is an easy and cost-effective electrical device. From the result, it is observed that the output voltage of the proposed inverter is greatly improved compared to the other inverter circuits.https://doi.org/10.1051/matecconf/201818911010
collection DOAJ
language English
format Article
sources DOAJ
author Motakabber S. M. A.
Wahidur Rahman M.
Ibn Ibrahimy Muhammad
spellingShingle Motakabber S. M. A.
Wahidur Rahman M.
Ibn Ibrahimy Muhammad
Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator
MATEC Web of Conferences
author_facet Motakabber S. M. A.
Wahidur Rahman M.
Ibn Ibrahimy Muhammad
author_sort Motakabber S. M. A.
title Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator
title_short Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator
title_full Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator
title_fullStr Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator
title_full_unstemmed Simulation and modeling of high voltage DC to AC PWM inverter for electrostatic generator
title_sort simulation and modeling of high voltage dc to ac pwm inverter for electrostatic generator
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description This paper proposes a single-phase DC to AC inverter for ESG (electrostatic generators) that may be used in the household’s application. The electrostatic generators were developed a while ago and remained abandoned for a long time. Now, as the modern technology advanced, it’s time to utilize the ESG to power generation. A pulse width modulation (PWM) based high voltage DC to AC inverter is a suitable system for converting the EGS high electrostatic DC voltage into standard 50Hz, 220V(rms) AC. The PWM technique is used to control the inverter switches to create a pulse width modulated bi-phase square wave signal. A lowpass LC filter has been utilized to remove the higher harmonic frequencies and which is capable to reduce the total harmonic distortion (THD) around 3.5%. The proposed model showed the overall system performance in terms of efficiency is 95%. To use ESG, this inverter is an easy and cost-effective electrical device. From the result, it is observed that the output voltage of the proposed inverter is greatly improved compared to the other inverter circuits.
url https://doi.org/10.1051/matecconf/201818911010
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AT wahidurrahmanm simulationandmodelingofhighvoltagedctoacpwminverterforelectrostaticgenerator
AT ibnibrahimymuhammad simulationandmodelingofhighvoltagedctoacpwminverterforelectrostaticgenerator
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