A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment

A novel circuit topology of modified switched boost high frequency hybrid resonant inverter fitted induction heating equipment is presented in this paper for efficient induction heating. Recently, induction heating technique is becoming very popular for both domestic and industrial purposes because...

Full description

Bibliographic Details
Main Authors: Bhattacharya Ananyo, Sit Kaushik, Sadhu Pradip Kumar, Pal Nitai
Format: Article
Language:English
Published: Polish Academy of Sciences 2016-12-01
Series:Archives of Electrical Engineering
Subjects:
Online Access:http://www.degruyter.com/view/j/aee.2016.65.issue-4/aee-2016-0057/aee-2016-0057.xml?format=INT
_version_ 1818501318660063232
author Bhattacharya Ananyo
Sit Kaushik
Sadhu Pradip Kumar
Pal Nitai
author_facet Bhattacharya Ananyo
Sit Kaushik
Sadhu Pradip Kumar
Pal Nitai
author_sort Bhattacharya Ananyo
collection DOAJ
description A novel circuit topology of modified switched boost high frequency hybrid resonant inverter fitted induction heating equipment is presented in this paper for efficient induction heating. Recently, induction heating technique is becoming very popular for both domestic and industrial purposes because of its high energy efficiency and controllability. Generally in induction heating, a high frequency alternating magnetic field is required to induce the eddy currents in the work piece. High frequency resonant inverters are incorporated in induction heating equipment which produce a high frequency alternating magnetic field surrounding the coil. Previously this high frequency alternating magnetic field was produced by voltage source inverters. But VSIs have several demerits. So, in this paper, a new scheme of modified switched boost high frequency hybrid resonant inverter fitted induction heating equipment has been depicted which enhances the energy efficiency and controllability and the same is validated by PSIM.
first_indexed 2024-12-10T20:54:31Z
format Article
id doaj.art-05233ecd2601440688506da0ca3514bd
institution Directory Open Access Journal
issn 2300-2506
language English
last_indexed 2024-12-10T20:54:31Z
publishDate 2016-12-01
publisher Polish Academy of Sciences
record_format Article
series Archives of Electrical Engineering
spelling doaj.art-05233ecd2601440688506da0ca3514bd2022-12-22T01:34:00ZengPolish Academy of SciencesArchives of Electrical Engineering2300-25062016-12-0165481582610.1515/aee-2016-0057aee-2016-0057A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipmentBhattacharya Ananyo0Sit Kaushik1Sadhu Pradip Kumar2Pal Nitai3Indian Institute of Technology (Indian School of Mines), Dhanbad Jharkhand 826004, IndiaIndian Institute of Technology (Indian School of Mines), Dhanbad Jharkhand 826004, IndiaIndian Institute of Technology (Indian School of Mines), Dhanbad Jharkhand 826004, IndiaIndian Institute of Technology (Indian School of Mines), Dhanbad Jharkhand 826004, IndiaA novel circuit topology of modified switched boost high frequency hybrid resonant inverter fitted induction heating equipment is presented in this paper for efficient induction heating. Recently, induction heating technique is becoming very popular for both domestic and industrial purposes because of its high energy efficiency and controllability. Generally in induction heating, a high frequency alternating magnetic field is required to induce the eddy currents in the work piece. High frequency resonant inverters are incorporated in induction heating equipment which produce a high frequency alternating magnetic field surrounding the coil. Previously this high frequency alternating magnetic field was produced by voltage source inverters. But VSIs have several demerits. So, in this paper, a new scheme of modified switched boost high frequency hybrid resonant inverter fitted induction heating equipment has been depicted which enhances the energy efficiency and controllability and the same is validated by PSIM.http://www.degruyter.com/view/j/aee.2016.65.issue-4/aee-2016-0057/aee-2016-0057.xml?format=INTmodified switched boosthigh frequencyhybrid resonant inverterinduction heatingcontrollabilityVSI and PSIM
spellingShingle Bhattacharya Ananyo
Sit Kaushik
Sadhu Pradip Kumar
Pal Nitai
A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
Archives of Electrical Engineering
modified switched boost
high frequency
hybrid resonant inverter
induction heating
controllability
VSI and PSIM
title A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
title_full A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
title_fullStr A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
title_full_unstemmed A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
title_short A novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
title_sort novel circuit topology of modified switched boost hybrid resonant inverter fitted induction heating equipment
topic modified switched boost
high frequency
hybrid resonant inverter
induction heating
controllability
VSI and PSIM
url http://www.degruyter.com/view/j/aee.2016.65.issue-4/aee-2016-0057/aee-2016-0057.xml?format=INT
work_keys_str_mv AT bhattacharyaananyo anovelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT sitkaushik anovelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT sadhupradipkumar anovelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT palnitai anovelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT bhattacharyaananyo novelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT sitkaushik novelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT sadhupradipkumar novelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment
AT palnitai novelcircuittopologyofmodifiedswitchedboosthybridresonantinverterfittedinductionheatingequipment