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NPTEL Syllabus Switched Mode Power Conversion - Video course COURSE OUTLINE  Switching devices - ideal and real characteristics, control, drive and protection. Reactive circuit elements - their selection and design. Switching p ower converters - circuit topology, operation, steady-s tate model, dynamic model. Analysis, modeling and performance functions of switching power converters. Review of linear con trol theory. Closed-loop control of switching power converters. Sample designs and construction projects.  COURSE DETAIL  Module No. Topics 1 Switched mode power conversion – Overview 1. I ntroduction to DC-DC converter 2 Power semiconductor switches 2. Diode 3. Controlled Switches 3 Prior art 4. P rior Art 4 Reactive components 5. Inductor 6. Transformer 7. Capacitor 8. I ssues related to switches 9. Energy storage – Capacitor 10. Energy storage – Inductor NPTEL http://nptel.iitm.ac.in Electrical Engineering  Pre-requisites: Circuit Theory, Electromagnetics, Analog & Digit al Electronic Circuits. Coordinators: Prof. L. Umanand Centre for Electronics Design and TechnologyIISc Bangalore Prof. V. Ramanarayanan Department of Electrical EngineeringIISc Bangalore

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NPTEL Syllabus

Switched Mode Power Conversion - Videocourse

COURSE OUTLINE 

Switching devices - ideal and real characteristics, control, drive and protection.

Reactive circuit elements - their selection and design.

Switching power converters - circuit topology, operation, steady-state model, dynamicmodel.

Analysis, modeling and performance functions of switching power converters.

Review of linear control theory.

Closed-loop control of switching power converters.

Sample designs and construction projects.

 

COURSE DETAIL

 

Module No. Topics

1 Switched mode power conversion – Overview

1. Introduction to DC-DC converter

2 Power semiconductor switches

2. Diode3. Controlled Switches

3 Prior art

4. Prior Art

4 Reactive components

5. Inductor6. Transformer7. Capacitor8. Issues related to switches9. Energy storage – Capacitor10. Energy storage – Inductor

NPTELhttp://nptel.iitm.ac.in

ElectricalEngineering

 

Pre-requisites:

Circuit Theory,Electromagnetics, Analog& Digital ElectronicCircuits.

Coordinators:

Prof. L. UmanandCentre for ElectronicsDesign andTechnologyIISc Bangalore

Prof. V.RamanarayananDepartment of ElectricalEngineeringIIScBangalore

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5 Non-isolated converters

11. Primitive Converter12. Non-Isolated converter – I13. Non-Isolation converter – II

6 Isolated converters

14. Isolated Converters - I15. Isolated Converters – II

7 CCM and DCM operation of converters

16. Conduction Mode17. Problem set - I

18. Problem set – II

8 Modeling of converters

19. Modeling DC-DC converters20. State space representation - I21. State Space representation - II22. Circuit Averaging - I23. Circuit Averaging - II24. State Space Model of Boost Converter

9 Controller basics

25. DC-DC converter controller26. Controller Structure27. PID Controller - I28. PID Controller - II29. PID Controller - III30. Implementation of PID controller

10 Pulse width modulation

31. Pulse Width Modulator

11 Controller design principles

32. Controller Design - I

33. Controller Design – II

12 Common practical control applications

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34. Controllers and Sensing Circuit35. Regulation of Multiple outputs - I36. Regulation of Multiple outputs - II37.Current Control38. Unity Power Factor Converter

13 Basics on design of magnetics

39. Magnetic Design

14 Design examples

40. DC-DC Converter Design

References:

1. Middlebrook, R. D. (Robert David), and Slobodan Cuk, Advances in Switched-ModePower Conversion, Volumes I and II, 2nd Edition,TESLAco, 1983.

2. Erickson, Robert W., Fundamentals of Power Electronics, Chapman & Hall, 1997.

3. V. Ramanarayanan Course Material on Switched Mode PowerConversion,Department of Electrical Engineering, Indian Institute of Science,Bangalore 560012.http://minchu.ee.iisc.ernet.in/new/people/faculty/vr/book.pdf

A joint venture by IISc and IITs, funded by MHRD, Govt of India http://nptel.iitm.ac.in