Design and simulation of a low noise PWM based phase synchronous inverter for microgrid

A microgrid is a clear energy system consisting of demand management, storage, generation system and loads which are capable of operating in parallel or independently with the main power grid. There are some issues in the inverter circuit design which are, high frequency switching loss and noise. I...

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Main Authors: Rahman, Tawfikur, Motakabber, S. M. A., Ibrahimy, Muhammad Ibn
Format: Proceeding Paper
Language:English
English
Published: Institute of Electrical and Electronics Engineers, Inc. 2017
Subjects:
Online Access:http://irep.iium.edu.my/58392/
http://irep.iium.edu.my/58392/1/58392_Design%20and%20Simulation%20of%20a%20Low%20Noise.pdf
http://irep.iium.edu.my/58392/7/58392-Design%20and%20simulation%20of%20a%20low%20noise%20PWM%20based%20phase%20synchronous%20inverter%20for%20microgrid-SCOPUS.pdf
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author Rahman, Tawfikur
Motakabber, S. M. A.
Ibrahimy, Muhammad Ibn
author_facet Rahman, Tawfikur
Motakabber, S. M. A.
Ibrahimy, Muhammad Ibn
author_sort Rahman, Tawfikur
building IIUM Repository
collection Online Access
description A microgrid is a clear energy system consisting of demand management, storage, generation system and loads which are capable of operating in parallel or independently with the main power grid. There are some issues in the inverter circuit design which are, high frequency switching loss and noise. In addition, an electrostatic generator generates high voltage DC and low current. Any types of wave distortion or conversation losses of the inverter is a big challenged to use an electrostatic generator as an input energy source for the system. A pulse controller based switching circuit can be designed for increasing the inverter output efficiency. Herein an LCL filter has been designed to limit the THD to 3.2%. In this design, the switching frequency of the inverter is 1.65 kHz, the input supply of the inverter from an electrostatic generator of 10 kVdc, the output load of the inverter is a 100 Ω resistive load, the inverter output voltage is ±10 kVPP and the output supply frequency of the inverter is 50 Hz have been considered. The proposed inverter circuit has been simulated by MATLAB2014a. The conversion efficiency of the inverter without and with filter are observed as 66.2% and 96.8% respectively. The Phase synchronous error for each phase is approximately 50 degrees.
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format Proceeding Paper
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institution International Islamic University Malaysia
institution_category Local University
language English
English
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publishDate 2017
publisher Institute of Electrical and Electronics Engineers, Inc.
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spelling iium-583922018-03-14T03:37:58Z http://irep.iium.edu.my/58392/ Design and simulation of a low noise PWM based phase synchronous inverter for microgrid Rahman, Tawfikur Motakabber, S. M. A. Ibrahimy, Muhammad Ibn T Technology (General) TK7800 Electronics. Computer engineering. Computer hardware. Photoelectronic devices A microgrid is a clear energy system consisting of demand management, storage, generation system and loads which are capable of operating in parallel or independently with the main power grid. There are some issues in the inverter circuit design which are, high frequency switching loss and noise. In addition, an electrostatic generator generates high voltage DC and low current. Any types of wave distortion or conversation losses of the inverter is a big challenged to use an electrostatic generator as an input energy source for the system. A pulse controller based switching circuit can be designed for increasing the inverter output efficiency. Herein an LCL filter has been designed to limit the THD to 3.2%. In this design, the switching frequency of the inverter is 1.65 kHz, the input supply of the inverter from an electrostatic generator of 10 kVdc, the output load of the inverter is a 100 Ω resistive load, the inverter output voltage is ±10 kVPP and the output supply frequency of the inverter is 50 Hz have been considered. The proposed inverter circuit has been simulated by MATLAB2014a. The conversion efficiency of the inverter without and with filter are observed as 66.2% and 96.8% respectively. The Phase synchronous error for each phase is approximately 50 degrees. Institute of Electrical and Electronics Engineers, Inc. 2017-08 Proceeding Paper PeerReviewed application/pdf en http://irep.iium.edu.my/58392/1/58392_Design%20and%20Simulation%20of%20a%20Low%20Noise.pdf application/pdf en http://irep.iium.edu.my/58392/7/58392-Design%20and%20simulation%20of%20a%20low%20noise%20PWM%20based%20phase%20synchronous%20inverter%20for%20microgrid-SCOPUS.pdf Rahman, Tawfikur and Motakabber, S. M. A. and Ibrahimy, Muhammad Ibn (2017) Design and simulation of a low noise PWM based phase synchronous inverter for microgrid. In: 2017 IEEE Regional Symposium on Micro and Nanoelectronics ( RSM), 23rd-25th August 2017, Batu Feringgi Beach, Penang. http://ieeemalaysia-eds.org/rsm2017/ieee-pdf-express/
spellingShingle T Technology (General)
TK7800 Electronics. Computer engineering. Computer hardware. Photoelectronic devices
Rahman, Tawfikur
Motakabber, S. M. A.
Ibrahimy, Muhammad Ibn
Design and simulation of a low noise PWM based phase synchronous inverter for microgrid
title Design and simulation of a low noise PWM based phase synchronous inverter for microgrid
title_full Design and simulation of a low noise PWM based phase synchronous inverter for microgrid
title_fullStr Design and simulation of a low noise PWM based phase synchronous inverter for microgrid
title_full_unstemmed Design and simulation of a low noise PWM based phase synchronous inverter for microgrid
title_short Design and simulation of a low noise PWM based phase synchronous inverter for microgrid
title_sort design and simulation of a low noise pwm based phase synchronous inverter for microgrid
topic T Technology (General)
TK7800 Electronics. Computer engineering. Computer hardware. Photoelectronic devices
url http://irep.iium.edu.my/58392/
http://irep.iium.edu.my/58392/
http://irep.iium.edu.my/58392/1/58392_Design%20and%20Simulation%20of%20a%20Low%20Noise.pdf
http://irep.iium.edu.my/58392/7/58392-Design%20and%20simulation%20of%20a%20low%20noise%20PWM%20based%20phase%20synchronous%20inverter%20for%20microgrid-SCOPUS.pdf