SlideShare uma empresa Scribd logo
1 de 17
BIDIRECTIONAL ISOLATED DC-DC CONVERTER
FOR 20KW APPLICATION
BY
P.VASUDEVA GUPTHA
14MPE0044
INTERNAL
Prof. N. Arun
(Assistant Professor)
Power Electronics and Drives Dept.,
V.I.T UNIVERSITY, VELLORE .
EXTERNAL
Sh. Rahul Verma
(Scientist G)
IEG Group Head,
CSIR-CEERI,PILLANI.
Under the guidance of
COMPANY DETAILS
• INDUSTRY NAME – CSIR-Central Electronics Engineering Research Institute
• ADDRESS - CSIR-CEERI
• CEERI Road,
• Pilani,
• Jhunjhunu District,
• Rajasthan,
• 333031.
• GUIDE - Sh. Rahul Verma ( Scientist G)
• EMAIL - rv@ceeri.ernet.in
• WEBSITE - http://www.ceeri.res.in/
• INTERNSHIP - Not Through PAT
• STARTING DATE - 1-08-2015
• ENDING DATE - 30-04-2016
• DURATION - 9 Months
• STIPEND - NO
AIM/OBJECTIVES
 To design Bi-directional isolated DC-DC converter for 20KW Application
OBJECTIVES:
1. To Provide Safety
2. To reduce power loss
3. To reduce size, weight and cost
4. To achieve Thermal considerations
5. To reduce Electro-magnetic interference
6. To implement Soft Switching Techniques
AIM:
SPECIFICATIONS
1. Input voltage – 100V
2. Output voltage – 600V
3. Output power – 20KW
4. Switching frequency – 20KHz
ADDITIONAL REQUIREMENTS
1. Galvanic Isolation – For safety purpose
2. High Conversion Efficiency
3. Lower converter volume – obtained by high switching frequency
INTRODUCTION
1. Bidirectional convertor allows the power flow in both directions
2. Bidirectional convertor operates in two modes
 BOOST MODE
 BUCK MODE
BOOST MODE
OUTPUT VOLTAGE
OUTPUT CURRENT
OUTPUT VOLTAGE : 618.5 volts
OUTPUT CURRENT : 32.4 amps
OUTPUT POWER : 20,039.4 watts
OUTPUT RESISTANCE : 18.5 ohms
SWITCHING FREQUENCY:20KHZ
DUTY Ratio : 0.6
ZCS SOFT SWITCHING OF PRIMARY SWITCHES
V1: switch voltage
I1: switch current
BUCK MODE
INPUT VOLTAGE : 600
OUTPUT VOLTAGE : 102.9 volts
OUTPUT CURRENT : 202 amps
OUTPUT POWER : 20,785watts
OUTPUT RESISTANCE : 0.5 ohms
SWITCHING FREQUENCY:20KHZ
DUTY RATIO : 0.5
OUTPUT VOLTAGE
OUTPUT CURRENT
ZVS SOFT SWITCHING OF PRIMARY SWITCHES
V2: switch voltage
I2: switch current
TRANSFORMER DESIGN
REQUIREMENTS:
1. AMCC-400 CORE MATERIAL
2. PRIMARI TURNS: 11
3. SECONDARY TURNS:27
4. TURNS RATIO :2.4
5. CURRENT DENSITY :6 A/mm2
CALCULATION RESULTS
1. CORE LOSS : 40 WATTS
2. COPPER LOSS : 76 WATTS
3. TOTAL LOSS:116 WATTS
COPPER FOIL REQUIREMENT
1.PRIMARY: 10mm * 1.8mm
2. SECONDARY : 10mm * 0.8mm
Ip :96A
Is :41A
POWER: 10KWATTS
DSP – TMS320F28027
FEAUTERS:
1. Frequency : 60MHz (16.67-ns Cycle Time)
2. High-Efficiency 32-Bit CPU
August 2015 Literature review
September Topology Selection
October Simulation
November Transformer Design
December Coding
January Hardware Implementation
February Testing
March Documentation
WORK PLAN
1. Martin Pavlovsky, Sjoerd Walter Hero de Haan, and Jan Abraham Ferreira, “Reaching High Power
Density in Multi kilowatt DC–DC Converters With Galvanic Isolation” I.E.E.E Power Electronics,2009
2. R. Y. Chen, R. L. Lin, T. J. Liang, J. F. Chen, and K. C. Tseng, ” Current-fed Full-bridge Boost
Converter with Zero Current Switching for High Voltage Applications ” I.E.E.E Power Electronics,2005
3. Pan Xuewei, Student Member IEEE, Akshay K. Rathore, Senior Member IEEE,” Novel Bidirectional
Snubberless Soft-switching Naturally Clamped Zero Current Commutated Current fed Dual Active
Bridge (CFDAB) Converter for Fuel Cell Vehicles ” I.E.E.E Power Electronics,2013
4. Pan Xuewei, Student Member and Akshay K Rathore, Senior Member, IEEE,” Comparison of Bi-
directional Voltage-fed and Current-fed Dual Active Bridge Isolated Dc/Dc Converters Low Voltage High
Current Applications” I.E.E.E Power Electronics,2014
REFERENCES:
5. Manu Jain, M. Daniele, and Praveen K. Jain, “A Bidirectional DC–DC Converter Topology for Low Power
Application” I.E.E.E Power Electronics,2000
6. F. Krismer, S. Round, J. W. Kolar, ” Performance Optimization of a High Current Dual Active Bridge
with a Wide Operating Voltage Range” I.E.E.E Power Electronics,2006
7.Yao-Ching Hsieh, Yong-Nong Chang, Kun-Ying Lee Yu-Chun Chiu Wei-Ting Wu,” Bidirectional Softly
Switched DC-to-DC Converter with Galvanic Isolation” I.E.E.E Power Electronics,2015
8. M. A. Bahmani and T. Thiringer, M. Kharezy” Design Methodology and Optimization of a Medium
Frequency Transformer for High Power DC-DC Applications” I.E.E.E Power Electronics,2015
REFERENCES:
THANK YOU

Mais conteúdo relacionado

Mais procurados

three phase inverter
three phase inverterthree phase inverter
three phase inverterMalik Zaid
 
Speed Control of Synchronous Motor
Speed Control of Synchronous Motor Speed Control of Synchronous Motor
Speed Control of Synchronous Motor Ashutosh Jha
 
SIMULATION OF MULTIMODE DC-DC CONVERTER FOR EV APPLICATIONS
SIMULATION OF MULTIMODE  DC-DC CONVERTER FOR EV APPLICATIONSSIMULATION OF MULTIMODE  DC-DC CONVERTER FOR EV APPLICATIONS
SIMULATION OF MULTIMODE DC-DC CONVERTER FOR EV APPLICATIONSDivya Yennam
 
Permanent magnet brushless dc motors ppt
Permanent magnet brushless dc motors pptPermanent magnet brushless dc motors ppt
Permanent magnet brushless dc motors pptsrmrithi
 
Vector Control of AC Induction Motors
Vector Control of AC Induction MotorsVector Control of AC Induction Motors
Vector Control of AC Induction MotorsPranjal Barman
 
Automatic load frequency control
Automatic load frequency controlAutomatic load frequency control
Automatic load frequency controlBalaram Das
 
Vector control of pmsm
Vector control of pmsmVector control of pmsm
Vector control of pmsmMalarselvamV
 
Fixed and variable speed turbine
Fixed and variable speed turbineFixed and variable speed turbine
Fixed and variable speed turbineSonuKumarBairwa
 
Electric drive
Electric driveElectric drive
Electric drivemishradiya
 
Unit I design of electrical machines
Unit I   design of electrical machinesUnit I   design of electrical machines
Unit I design of electrical machinesnganesh90
 
Power electronics in Wind Turbine Systems
Power electronics in Wind Turbine SystemsPower electronics in Wind Turbine Systems
Power electronics in Wind Turbine SystemsManasa K
 
Unit 1 Power System Stability
Unit 1 Power System Stability Unit 1 Power System Stability
Unit 1 Power System Stability SANTOSH GADEKAR
 
Control methods of PMSM
Control methods of PMSMControl methods of PMSM
Control methods of PMSMkarthi1017
 

Mais procurados (20)

PMSM
PMSMPMSM
PMSM
 
three phase inverter
three phase inverterthree phase inverter
three phase inverter
 
Speed Control of Synchronous Motor
Speed Control of Synchronous Motor Speed Control of Synchronous Motor
Speed Control of Synchronous Motor
 
SIMULATION OF MULTIMODE DC-DC CONVERTER FOR EV APPLICATIONS
SIMULATION OF MULTIMODE  DC-DC CONVERTER FOR EV APPLICATIONSSIMULATION OF MULTIMODE  DC-DC CONVERTER FOR EV APPLICATIONS
SIMULATION OF MULTIMODE DC-DC CONVERTER FOR EV APPLICATIONS
 
Permanent magnet brushless dc motors ppt
Permanent magnet brushless dc motors pptPermanent magnet brushless dc motors ppt
Permanent magnet brushless dc motors ppt
 
Vector Control of AC Induction Motors
Vector Control of AC Induction MotorsVector Control of AC Induction Motors
Vector Control of AC Induction Motors
 
Automatic load frequency control
Automatic load frequency controlAutomatic load frequency control
Automatic load frequency control
 
Reluctance motor
Reluctance  motor Reluctance  motor
Reluctance motor
 
Swing equation
Swing equationSwing equation
Swing equation
 
Vector control of pmsm
Vector control of pmsmVector control of pmsm
Vector control of pmsm
 
Fixed and variable speed turbine
Fixed and variable speed turbineFixed and variable speed turbine
Fixed and variable speed turbine
 
HVDC presentation
HVDC presentationHVDC presentation
HVDC presentation
 
Electric drive
Electric driveElectric drive
Electric drive
 
Load flow studies 19
Load flow studies 19Load flow studies 19
Load flow studies 19
 
MTDC SYSTEMS
MTDC SYSTEMSMTDC SYSTEMS
MTDC SYSTEMS
 
Unit I design of electrical machines
Unit I   design of electrical machinesUnit I   design of electrical machines
Unit I design of electrical machines
 
Power electronics in Wind Turbine Systems
Power electronics in Wind Turbine SystemsPower electronics in Wind Turbine Systems
Power electronics in Wind Turbine Systems
 
Unit 1 Power System Stability
Unit 1 Power System Stability Unit 1 Power System Stability
Unit 1 Power System Stability
 
Structure of power system
Structure of power systemStructure of power system
Structure of power system
 
Control methods of PMSM
Control methods of PMSMControl methods of PMSM
Control methods of PMSM
 

Destaque

A dual active bridge dc-dc converter for application in a smart user network
A dual active bridge dc-dc converter for application in a smart user networkA dual active bridge dc-dc converter for application in a smart user network
A dual active bridge dc-dc converter for application in a smart user networkAlessandro Burgio
 
A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...
A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...
A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...Alessandro Burgio
 
Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...
Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...
Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...Tom Gibson
 
An isolated three port bidirectional dc-dc converter for photovoltaic systems...
An isolated three port bidirectional dc-dc converter for photovoltaic systems...An isolated three port bidirectional dc-dc converter for photovoltaic systems...
An isolated three port bidirectional dc-dc converter for photovoltaic systems...LeMeniz Infotech
 
Resonant Converter
Resonant ConverterResonant Converter
Resonant Converterpilurout
 
8 ee362_l_dc_dc_buckboost_ppt (1)
 8 ee362_l_dc_dc_buckboost_ppt (1) 8 ee362_l_dc_dc_buckboost_ppt (1)
8 ee362_l_dc_dc_buckboost_ppt (1)balaji kumar
 
Dc to Dc Converter (chopper)
Dc to Dc Converter (chopper)Dc to Dc Converter (chopper)
Dc to Dc Converter (chopper)dharmesh nakum
 
Buck-Boost Converter
Buck-Boost ConverterBuck-Boost Converter
Buck-Boost ConverterSagar Patil
 
Isolated High Power Quarter Brick DC/DC Converters
Isolated High Power Quarter Brick DC/DC ConvertersIsolated High Power Quarter Brick DC/DC Converters
Isolated High Power Quarter Brick DC/DC ConvertersPremier Farnell
 
Analysis of a bidirectional isolated dc – dc converter for hybrid system
Analysis of a bidirectional isolated dc – dc converter for hybrid systemAnalysis of a bidirectional isolated dc – dc converter for hybrid system
Analysis of a bidirectional isolated dc – dc converter for hybrid systemIAEME Publication
 
The isolated buck boost dc to dc converter with high efficiency for higher in...
The isolated buck boost dc to dc converter with high efficiency for higher in...The isolated buck boost dc to dc converter with high efficiency for higher in...
The isolated buck boost dc to dc converter with high efficiency for higher in...IOSR Journals
 
NELC-POCT20120930a
NELC-POCT20120930aNELC-POCT20120930a
NELC-POCT20120930aMark Gusack
 
Critial thinking week 2
Critial thinking week 2Critial thinking week 2
Critial thinking week 2Greg Wells
 
A laboratory model of a dual active bridge dc-dc converter for a smart user n...
A laboratory model of a dual active bridge dc-dc converter for a smart user n...A laboratory model of a dual active bridge dc-dc converter for a smart user n...
A laboratory model of a dual active bridge dc-dc converter for a smart user n...Alessandro Burgio
 
NELC-A1C20120930a
NELC-A1C20120930aNELC-A1C20120930a
NELC-A1C20120930aMark Gusack
 

Destaque (20)

A dual active bridge dc-dc converter for application in a smart user network
A dual active bridge dc-dc converter for application in a smart user networkA dual active bridge dc-dc converter for application in a smart user network
A dual active bridge dc-dc converter for application in a smart user network
 
A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...
A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...
A Two-Input Dual Active Bridge Converter for a Smart User Network Using Integ...
 
Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...
Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...
Design of a Single Phase Isolated Bidirectional AC to DC Converter for Batter...
 
An isolated three port bidirectional dc-dc converter for photovoltaic systems...
An isolated three port bidirectional dc-dc converter for photovoltaic systems...An isolated three port bidirectional dc-dc converter for photovoltaic systems...
An isolated three port bidirectional dc-dc converter for photovoltaic systems...
 
Bi-directional Flyback DC-DC Converter
Bi-directional Flyback DC-DC Converter Bi-directional Flyback DC-DC Converter
Bi-directional Flyback DC-DC Converter
 
Resonant Converter
Resonant ConverterResonant Converter
Resonant Converter
 
8 ee362_l_dc_dc_buckboost_ppt (1)
 8 ee362_l_dc_dc_buckboost_ppt (1) 8 ee362_l_dc_dc_buckboost_ppt (1)
8 ee362_l_dc_dc_buckboost_ppt (1)
 
Dc to Dc Converter (chopper)
Dc to Dc Converter (chopper)Dc to Dc Converter (chopper)
Dc to Dc Converter (chopper)
 
Buck-Boost Converter
Buck-Boost ConverterBuck-Boost Converter
Buck-Boost Converter
 
Isolated High Power Quarter Brick DC/DC Converters
Isolated High Power Quarter Brick DC/DC ConvertersIsolated High Power Quarter Brick DC/DC Converters
Isolated High Power Quarter Brick DC/DC Converters
 
Analysis of a bidirectional isolated dc – dc converter for hybrid system
Analysis of a bidirectional isolated dc – dc converter for hybrid systemAnalysis of a bidirectional isolated dc – dc converter for hybrid system
Analysis of a bidirectional isolated dc – dc converter for hybrid system
 
Power electronics
Power electronicsPower electronics
Power electronics
 
The isolated buck boost dc to dc converter with high efficiency for higher in...
The isolated buck boost dc to dc converter with high efficiency for higher in...The isolated buck boost dc to dc converter with high efficiency for higher in...
The isolated buck boost dc to dc converter with high efficiency for higher in...
 
Iee
IeeIee
Iee
 
POWER ELECTRONICS
POWER ELECTRONICSPOWER ELECTRONICS
POWER ELECTRONICS
 
NELC-POCT20120930a
NELC-POCT20120930aNELC-POCT20120930a
NELC-POCT20120930a
 
Critial thinking week 2
Critial thinking week 2Critial thinking week 2
Critial thinking week 2
 
A laboratory model of a dual active bridge dc-dc converter for a smart user n...
A laboratory model of a dual active bridge dc-dc converter for a smart user n...A laboratory model of a dual active bridge dc-dc converter for a smart user n...
A laboratory model of a dual active bridge dc-dc converter for a smart user n...
 
NELC-A1C20120930a
NELC-A1C20120930aNELC-A1C20120930a
NELC-A1C20120930a
 
Cuk dc dc+converter
Cuk dc dc+converterCuk dc dc+converter
Cuk dc dc+converter
 

Semelhante a Bidirectional DC-DC isolated converter

Group 1 Final ppt.pptx
Group 1 Final ppt.pptxGroup 1 Final ppt.pptx
Group 1 Final ppt.pptxArpitaBanik8
 
Design of Tesla Coil
Design of Tesla CoilDesign of Tesla Coil
Design of Tesla CoilIRJET Journal
 
FeiXue_CV_2016
FeiXue_CV_2016FeiXue_CV_2016
FeiXue_CV_2016Fei Xue
 
sample project report (2).docx
sample project report (2).docxsample project report (2).docx
sample project report (2).docxDrFROSTFIRExR
 
High efficiency push pull converter for photovoltaic applications
High efficiency push pull converter for photovoltaic applicationsHigh efficiency push pull converter for photovoltaic applications
High efficiency push pull converter for photovoltaic applicationsEklavya Sharma
 
Power Generation Using Footstep
Power Generation Using FootstepPower Generation Using Footstep
Power Generation Using Footsteppaperpublications3
 
Joanna He's Resume 2016 v3
Joanna He's Resume 2016 v3Joanna He's Resume 2016 v3
Joanna He's Resume 2016 v3Joanna He
 
Pulse Generator with Adjustable duty cycle
Pulse Generator with Adjustable duty cycle Pulse Generator with Adjustable duty cycle
Pulse Generator with Adjustable duty cycle Ami Goswami
 
IEEE.Power.Electronics-March.2017-P2P.pdf
IEEE.Power.Electronics-March.2017-P2P.pdfIEEE.Power.Electronics-March.2017-P2P.pdf
IEEE.Power.Electronics-March.2017-P2P.pdfivan ion
 
Distance Relay:->Mho relay
Distance Relay:->Mho relayDistance Relay:->Mho relay
Distance Relay:->Mho relaymohan_K_M
 
Central power research institute report
Central power research institute reportCentral power research institute report
Central power research institute reportMayur Dhanaji Rane
 
Review on power quality analysis by rajendra singh ppt
Review on power quality analysis by rajendra singh pptReview on power quality analysis by rajendra singh ppt
Review on power quality analysis by rajendra singh pptRajendnra Singh
 
Weekly2 05 54261505
Weekly2 05 54261505Weekly2 05 54261505
Weekly2 05 54261505CN Neung
 
foot step power generation of generatwe electricity.pptx
foot step power generation of generatwe electricity.pptxfoot step power generation of generatwe electricity.pptx
foot step power generation of generatwe electricity.pptxngokulnathan56
 
IRJET - Implementation of Low Harmonics Multilevel Inverter using SPWM
IRJET -  	  Implementation of Low Harmonics Multilevel Inverter using SPWMIRJET -  	  Implementation of Low Harmonics Multilevel Inverter using SPWM
IRJET - Implementation of Low Harmonics Multilevel Inverter using SPWMIRJET Journal
 

Semelhante a Bidirectional DC-DC isolated converter (20)

Resume
ResumeResume
Resume
 
Group 1 Final ppt.pptx
Group 1 Final ppt.pptxGroup 1 Final ppt.pptx
Group 1 Final ppt.pptx
 
Design of Tesla Coil
Design of Tesla CoilDesign of Tesla Coil
Design of Tesla Coil
 
FeiXue_CV_2016
FeiXue_CV_2016FeiXue_CV_2016
FeiXue_CV_2016
 
sample project report (2).docx
sample project report (2).docxsample project report (2).docx
sample project report (2).docx
 
High efficiency push pull converter for photovoltaic applications
High efficiency push pull converter for photovoltaic applicationsHigh efficiency push pull converter for photovoltaic applications
High efficiency push pull converter for photovoltaic applications
 
Power Generation Using Footstep
Power Generation Using FootstepPower Generation Using Footstep
Power Generation Using Footstep
 
CV_SR_IND1
CV_SR_IND1CV_SR_IND1
CV_SR_IND1
 
464 & 489
464 & 489464 & 489
464 & 489
 
Joanna He's Resume 2016 v3
Joanna He's Resume 2016 v3Joanna He's Resume 2016 v3
Joanna He's Resume 2016 v3
 
Pulse Generator with Adjustable duty cycle
Pulse Generator with Adjustable duty cycle Pulse Generator with Adjustable duty cycle
Pulse Generator with Adjustable duty cycle
 
IEEE.Power.Electronics-March.2017-P2P.pdf
IEEE.Power.Electronics-March.2017-P2P.pdfIEEE.Power.Electronics-March.2017-P2P.pdf
IEEE.Power.Electronics-March.2017-P2P.pdf
 
Distance Relay:->Mho relay
Distance Relay:->Mho relayDistance Relay:->Mho relay
Distance Relay:->Mho relay
 
pavippt [654168]
pavippt [654168]pavippt [654168]
pavippt [654168]
 
Central power research institute report
Central power research institute reportCentral power research institute report
Central power research institute report
 
Review on power quality analysis by rajendra singh ppt
Review on power quality analysis by rajendra singh pptReview on power quality analysis by rajendra singh ppt
Review on power quality analysis by rajendra singh ppt
 
Weekly2 05 54261505
Weekly2 05 54261505Weekly2 05 54261505
Weekly2 05 54261505
 
Presentasi fortei
Presentasi forteiPresentasi fortei
Presentasi fortei
 
foot step power generation of generatwe electricity.pptx
foot step power generation of generatwe electricity.pptxfoot step power generation of generatwe electricity.pptx
foot step power generation of generatwe electricity.pptx
 
IRJET - Implementation of Low Harmonics Multilevel Inverter using SPWM
IRJET -  	  Implementation of Low Harmonics Multilevel Inverter using SPWMIRJET -  	  Implementation of Low Harmonics Multilevel Inverter using SPWM
IRJET - Implementation of Low Harmonics Multilevel Inverter using SPWM
 

Último

Unit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfUnit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfRagavanV2
 
Booking open Available Pune Call Girls Pargaon 6297143586 Call Hot Indian Gi...
Booking open Available Pune Call Girls Pargaon  6297143586 Call Hot Indian Gi...Booking open Available Pune Call Girls Pargaon  6297143586 Call Hot Indian Gi...
Booking open Available Pune Call Girls Pargaon 6297143586 Call Hot Indian Gi...Call Girls in Nagpur High Profile
 
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...SUHANI PANDEY
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations120cr0395
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performancesivaprakash250
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VDineshKumar4165
 
UNIT-III FMM. DIMENSIONAL ANALYSIS
UNIT-III FMM.        DIMENSIONAL ANALYSISUNIT-III FMM.        DIMENSIONAL ANALYSIS
UNIT-III FMM. DIMENSIONAL ANALYSISrknatarajan
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordAsst.prof M.Gokilavani
 
UNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular ConduitsUNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular Conduitsrknatarajan
 
Vivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design SpainVivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design Spaintimesproduction05
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfJiananWang21
 
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank  Design by Working Stress - IS Method.pdfIntze Overhead Water Tank  Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank Design by Working Stress - IS Method.pdfSuman Jyoti
 
Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)simmis5
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTbhaskargani46
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . pptDineshKumar4165
 

Último (20)

Unit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdfUnit 1 - Soil Classification and Compaction.pdf
Unit 1 - Soil Classification and Compaction.pdf
 
Booking open Available Pune Call Girls Pargaon 6297143586 Call Hot Indian Gi...
Booking open Available Pune Call Girls Pargaon  6297143586 Call Hot Indian Gi...Booking open Available Pune Call Girls Pargaon  6297143586 Call Hot Indian Gi...
Booking open Available Pune Call Girls Pargaon 6297143586 Call Hot Indian Gi...
 
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
 
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
VIP Model Call Girls Kothrud ( Pune ) Call ON 8005736733 Starting From 5K to ...
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performance
 
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
 
Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
UNIT-III FMM. DIMENSIONAL ANALYSIS
UNIT-III FMM.        DIMENSIONAL ANALYSISUNIT-III FMM.        DIMENSIONAL ANALYSIS
UNIT-III FMM. DIMENSIONAL ANALYSIS
 
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
 
UNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular ConduitsUNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular Conduits
 
Vivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design SpainVivazz, Mieres Social Housing Design Spain
Vivazz, Mieres Social Housing Design Spain
 
(INDIRA) Call Girl Meerut Call Now 8617697112 Meerut Escorts 24x7
(INDIRA) Call Girl Meerut Call Now 8617697112 Meerut Escorts 24x7(INDIRA) Call Girl Meerut Call Now 8617697112 Meerut Escorts 24x7
(INDIRA) Call Girl Meerut Call Now 8617697112 Meerut Escorts 24x7
 
data_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdfdata_management_and _data_science_cheat_sheet.pdf
data_management_and _data_science_cheat_sheet.pdf
 
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank  Design by Working Stress - IS Method.pdfIntze Overhead Water Tank  Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
 
Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . ppt
 

Bidirectional DC-DC isolated converter

  • 1. BIDIRECTIONAL ISOLATED DC-DC CONVERTER FOR 20KW APPLICATION BY P.VASUDEVA GUPTHA 14MPE0044 INTERNAL Prof. N. Arun (Assistant Professor) Power Electronics and Drives Dept., V.I.T UNIVERSITY, VELLORE . EXTERNAL Sh. Rahul Verma (Scientist G) IEG Group Head, CSIR-CEERI,PILLANI. Under the guidance of
  • 2. COMPANY DETAILS • INDUSTRY NAME – CSIR-Central Electronics Engineering Research Institute • ADDRESS - CSIR-CEERI • CEERI Road, • Pilani, • Jhunjhunu District, • Rajasthan, • 333031. • GUIDE - Sh. Rahul Verma ( Scientist G) • EMAIL - rv@ceeri.ernet.in • WEBSITE - http://www.ceeri.res.in/ • INTERNSHIP - Not Through PAT • STARTING DATE - 1-08-2015 • ENDING DATE - 30-04-2016 • DURATION - 9 Months • STIPEND - NO
  • 3. AIM/OBJECTIVES  To design Bi-directional isolated DC-DC converter for 20KW Application OBJECTIVES: 1. To Provide Safety 2. To reduce power loss 3. To reduce size, weight and cost 4. To achieve Thermal considerations 5. To reduce Electro-magnetic interference 6. To implement Soft Switching Techniques AIM:
  • 4. SPECIFICATIONS 1. Input voltage – 100V 2. Output voltage – 600V 3. Output power – 20KW 4. Switching frequency – 20KHz ADDITIONAL REQUIREMENTS 1. Galvanic Isolation – For safety purpose 2. High Conversion Efficiency 3. Lower converter volume – obtained by high switching frequency
  • 5. INTRODUCTION 1. Bidirectional convertor allows the power flow in both directions 2. Bidirectional convertor operates in two modes  BOOST MODE  BUCK MODE
  • 7. OUTPUT VOLTAGE OUTPUT CURRENT OUTPUT VOLTAGE : 618.5 volts OUTPUT CURRENT : 32.4 amps OUTPUT POWER : 20,039.4 watts OUTPUT RESISTANCE : 18.5 ohms SWITCHING FREQUENCY:20KHZ DUTY Ratio : 0.6
  • 8. ZCS SOFT SWITCHING OF PRIMARY SWITCHES V1: switch voltage I1: switch current
  • 10. INPUT VOLTAGE : 600 OUTPUT VOLTAGE : 102.9 volts OUTPUT CURRENT : 202 amps OUTPUT POWER : 20,785watts OUTPUT RESISTANCE : 0.5 ohms SWITCHING FREQUENCY:20KHZ DUTY RATIO : 0.5 OUTPUT VOLTAGE OUTPUT CURRENT
  • 11. ZVS SOFT SWITCHING OF PRIMARY SWITCHES V2: switch voltage I2: switch current
  • 12. TRANSFORMER DESIGN REQUIREMENTS: 1. AMCC-400 CORE MATERIAL 2. PRIMARI TURNS: 11 3. SECONDARY TURNS:27 4. TURNS RATIO :2.4 5. CURRENT DENSITY :6 A/mm2 CALCULATION RESULTS 1. CORE LOSS : 40 WATTS 2. COPPER LOSS : 76 WATTS 3. TOTAL LOSS:116 WATTS COPPER FOIL REQUIREMENT 1.PRIMARY: 10mm * 1.8mm 2. SECONDARY : 10mm * 0.8mm Ip :96A Is :41A POWER: 10KWATTS
  • 13. DSP – TMS320F28027 FEAUTERS: 1. Frequency : 60MHz (16.67-ns Cycle Time) 2. High-Efficiency 32-Bit CPU
  • 14. August 2015 Literature review September Topology Selection October Simulation November Transformer Design December Coding January Hardware Implementation February Testing March Documentation WORK PLAN
  • 15. 1. Martin Pavlovsky, Sjoerd Walter Hero de Haan, and Jan Abraham Ferreira, “Reaching High Power Density in Multi kilowatt DC–DC Converters With Galvanic Isolation” I.E.E.E Power Electronics,2009 2. R. Y. Chen, R. L. Lin, T. J. Liang, J. F. Chen, and K. C. Tseng, ” Current-fed Full-bridge Boost Converter with Zero Current Switching for High Voltage Applications ” I.E.E.E Power Electronics,2005 3. Pan Xuewei, Student Member IEEE, Akshay K. Rathore, Senior Member IEEE,” Novel Bidirectional Snubberless Soft-switching Naturally Clamped Zero Current Commutated Current fed Dual Active Bridge (CFDAB) Converter for Fuel Cell Vehicles ” I.E.E.E Power Electronics,2013 4. Pan Xuewei, Student Member and Akshay K Rathore, Senior Member, IEEE,” Comparison of Bi- directional Voltage-fed and Current-fed Dual Active Bridge Isolated Dc/Dc Converters Low Voltage High Current Applications” I.E.E.E Power Electronics,2014 REFERENCES:
  • 16. 5. Manu Jain, M. Daniele, and Praveen K. Jain, “A Bidirectional DC–DC Converter Topology for Low Power Application” I.E.E.E Power Electronics,2000 6. F. Krismer, S. Round, J. W. Kolar, ” Performance Optimization of a High Current Dual Active Bridge with a Wide Operating Voltage Range” I.E.E.E Power Electronics,2006 7.Yao-Ching Hsieh, Yong-Nong Chang, Kun-Ying Lee Yu-Chun Chiu Wei-Ting Wu,” Bidirectional Softly Switched DC-to-DC Converter with Galvanic Isolation” I.E.E.E Power Electronics,2015 8. M. A. Bahmani and T. Thiringer, M. Kharezy” Design Methodology and Optimization of a Medium Frequency Transformer for High Power DC-DC Applications” I.E.E.E Power Electronics,2015 REFERENCES: