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Design and control of matrix converters : regulated 3-phase power supply and voltage sag mitigation for linear loads

Author: Anindya Dasgupta; Parthasarathi Sensarma
Publisher: Singapore : Springer, 2017.
Series: Energy systems in electrical engineering.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book describes two target applications for synchronous systems: regulated 3-phase voltage supply and voltage sag mitigation. It presents a detailed design procedure for converter switches and filters considering all steady-state, commutation and dynamic requirements. This work has evolved from previously published research by the authors, which in turn is part of a larger effort to expand the application domain  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Printed edition:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Anindya Dasgupta; Parthasarathi Sensarma
ISBN: 9789811038310 9811038317 9811038295 9789811038297
OCLC Number: 980875015
Description: 1 online resource (xvi, 124 pages) : illustrations.
Contents: Preface; Contents; About the Authors; List of Figures; List of Tables; 1 Introduction; 1.1 Overview of 3-Phase Matrix Converter; 1.1.1 Hardware Design; 1.1.2 Commutation; 1.1.3 Topology; 1.1.4 Modulation; 1.1.5 Dynamic Model for Controller Design; 1.2 Motivation and Objectives; 1.3 Assumptions and Scope; 1.4 Layout of the Book; 2 Low Frequency Dynamic Model; 2.1 Low Frequency Gain of 3-Phase MC; 2.1.1 Indirect Space Vector Modulation (ISVM) Approach; 2.2 Linearized Model; 2.3 Composition of Gc(s); 2.3.1 Poles and Zeros of CdTM; 2.3.2 Poles and Zeros of Gc(s); 2.4 Concluding Remarks. 3 Filter Design3.1 Input Filter Design; 3.1.1 Attenuation to Switching Frequency Ripple and Gain to Lower Order Harmonics; 3.1.2 Voltage Regulation and Reactive Current Loading; 3.1.3 Selecting Damping Resistor Rd; 3.1.4 Lower Limit of Cf; 3.1.5 Effect of Ls; 3.1.6 Design Modifications for a Non-minimum Phase Plant; 3.2 Output Filter; 3.2.1 Lower Limit of Lo; 3.3 Selection of Parameter Values; 3.4 Results and Discussion; 3.4.1 Open Loop Experimental Results; 3.5 Concluding Remarks; 4 Controller Design for Regulated Voltage Supply; 4.1 Specifications and Assumptions; 4.2 SISO Based Control. 4.2.1 Nff(s) and Hv(s)4.3 Experimental Results and Discussion; 4.4 Concluding Remarks; 5 Voltage Sag Mitigation; 5.1 Topology and Voltage Injection Method; 5.2 Plant Model; 5.3 Control Scheme for DVR; 5.3.1 FB Controller; 5.3.2 FF Controller; 5.4 Experimental Results and Discussion; 5.5 Concluding Remarks; 6 Conclusion; 6.1 Conclusions and Contributions; 6.2 Scope of Future Work; 6.3 Relevance of This Work at Present; Appendix A Derivations Associated with Low Frequency Dynamic Model; Appendix B 3 Phase Direct Matrix Converter Prototype; Appendix C Phase Locked Loop; References.
Series Title: Energy systems in electrical engineering.
Responsibility: Anindya Dasgupta, Parthasarathi Sensarma.

Abstract:

This book describes two target applications for synchronous systems: regulated 3-phase voltage supply and voltage sag mitigation. In the third stage, voltage controller design is detailed for a  Read more...

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