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عنوان
Design, control and application of modular multilevel converters for HVDC transmission systems /

پدید آورنده
Kamran Sharifabadi Research & Technology, Statoil ASA, Norway, Lennart Harnefors, ABB Corporate Research, Sweden Hans-Peter Nee School of Electrical Engineering, KTH Royal Institute of Technology, Sweden, Staffan Norrga, School of Electrical Engineering, KTH Royal Institute of Technology, Sweden, Remus Teodorescu, Department of Energy Technology, Aalborg University, Denmark

موضوع
Electric current converters-- Automatic control.,Electric current converters-- Design and construction.,Electric power transmission-- Direct current-- Equipment and supplies.

رده
TK2796

کتابخانه
Center and Library of Islamic Studies in European Languages

محل استقرار
استان: Qom ـ شهر: Qom

Center and Library of Islamic Studies in European Languages

تماس با کتابخانه : 32910706-025

INTERNATIONAL STANDARD BOOK NUMBER

(Number (ISBN
1118851544
(Number (ISBN
1118851552
(Number (ISBN
9781118851548
(Number (ISBN
9781118851555
Erroneous ISBN
1118851528
Erroneous ISBN
1118851560 (cloth)
Erroneous ISBN
9781118851524
Erroneous ISBN
9781118851562 (cloth)

NATIONAL BIBLIOGRAPHY NUMBER

Number
dltt

TITLE AND STATEMENT OF RESPONSIBILITY

Title Proper
Design, control and application of modular multilevel converters for HVDC transmission systems /
General Material Designation
[Book]
First Statement of Responsibility
Kamran Sharifabadi Research & Technology, Statoil ASA, Norway, Lennart Harnefors, ABB Corporate Research, Sweden Hans-Peter Nee School of Electrical Engineering, KTH Royal Institute of Technology, Sweden, Staffan Norrga, School of Electrical Engineering, KTH Royal Institute of Technology, Sweden, Remus Teodorescu, Department of Energy Technology, Aalborg University, Denmark

PROJECTED PUBLICATION DATE

Date
1608

PHYSICAL DESCRIPTION

Specific Material Designation and Extent of Item
1 online resource

INTERNAL BIBLIOGRAPHIES/INDEXES NOTE

Text of Note
Includes bibliographical references and index

CONTENTS NOTE

Text of Note
Cover; Title Page; Copyright; Contents; Preface; Acknowledgements; About the Companion Website; Nomenclature; Introduction; Chapter 1 Introduction to Modular Multilevel Converters; 1.1 Introduction; 1.2 The Two-Level Voltage Source Converter; 1.2.1 Topology and Basic Function; 1.2.2 Steady-State Operation; 1.3 Benefits of Multilevel Converters; 1.4 Early Multilevel Converters; 1.4.1 Diode Clamped Converters; 1.4.2 Flying Capacitor Converters; 1.5 Cascaded Multilevel Converters; 1.5.1 Submodules and Submodule Strings; 1.5.2 Modular Multilevel Converter with Half-Bridge Submodules
Text of Note
1.5.3 Other Cascaded Converter Topologies1.6 Summary; References; Chapter 2 Main-Circuit Design; 2.1 Introduction; 2.2 Properties and Design Choices of Power Semiconductor Devices for High-Power Applications; 2.2.1 Historical Overview of the Development Toward Modern Power Semiconductors; 2.2.2 Basic Conduction Properties of Power Semiconductor Devices; 2.2.3 P-N Junctions for Blocking; 2.2.4 Conduction Properties and the Need for Carrier Injection; 2.2.5 Switching Properties; 2.2.6 Packaging; 2.2.7 Reliability of Power Semiconductor Devices; 2.2.8 Silicon Carbide Power Devices
Text of Note
2.3 Medium-Voltage Capacitors for Submodules2.3.1 Design and Fabrication; 2.3.2 Self-Healing and Reliability; 2.4 Arm Inductors; 2.5 Submodule Configurations; 2.5.1 Existing Half-Bridge Submodule Realizations; 2.5.2 Clamped Single-Submodule; 2.5.3 Clamped Double-Submodule; 2.5.4 Unipolar-Voltage Full-Bridge Submodule; 2.5.5 Five-Level Cross-Connected Submodule; 2.5.6 Three-Level Cross-Connected Submodule; 2.5.7 Double Submodule; 2.5.8 Semi-Full-Bridge Submodule; 2.5.9 Soft-Switching Submodules; 2.6 Choice of Main-Circuit Parameters; 2.6.1 Main Input Data
Text of Note
2.6.2 Choice of Power Semiconductor Devices2.6.3 Choice of the Number of Submodules; 2.6.4 Choice of Submodule Capacitance; 2.6.5 Choice of Arm Inductance; 2.7 Handling of Redundant and Faulty Submodules; 2.7.1 Method 1; 2.7.2 Method 2; 2.7.3 Comparison of Method 1 and Method 2; 2.7.4 Handling of Redundancy Using IGBT Stacks; 2.8 Auxiliary Power Supplies for Submodules; 2.8.1 Using the Submodule Capacitor as Power Source; 2.8.2 Power Supplies with High-Voltage Inputs; 2.8.3 The Tapped-Inductor Buck Converter; 2.9 Start-Up Procedures; 2.10 Summary; References; Chapter 3 Dynamics and Control
Text of Note
3.1 Introduction3.2 Fundamentals; 3.2.1 Arms; 3.2.2 Submodules; 3.2.3 AC Bus; 3.2.4 DC Bus; 3.2.5 Currents; 3.3 Converter Operating Principle and Averaged Dynamic Model; 3.3.1 Dynamic Relations for the Currents; 3.3.2 Selection of the Mean Sum Capacitor Voltages; 3.3.3 Averaging Principle; 3.3.4 Ideal Selection of the Insertion Indices; 3.3.5 Sum-Capacitor-Voltage Ripples; 3.3.6 Maximum Output Voltage; 3.3.7 DC-Bus Dynamics; 3.3.8 Time Delays; 3.4 Per-Phase Output-Current Control; 3.4.1 Tracking of a Sinusoidal Reference Using a PI Controller
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OTHER EDITION IN ANOTHER MEDIUM

Title
Design, control and application of modular multilevel converters for HVDC transmission systems
International Standard Book Number
9781118851562

TOPICAL NAME USED AS SUBJECT

Electric current converters-- Automatic control.
Electric current converters-- Design and construction.
Electric power transmission-- Direct current-- Equipment and supplies.

(SUBJECT CATEGORY (Provisional

TEC-- 009070

DEWEY DECIMAL CLASSIFICATION

Number
621
.
31/7
Edition
23

LIBRARY OF CONGRESS CLASSIFICATION

Class number
TK2796

PERSONAL NAME - PRIMARY RESPONSIBILITY

Sharifabadi, Kamran,1963-

PERSONAL NAME - ALTERNATIVE RESPONSIBILITY

Harnefors, Lennart,1968-
Nee, Hans Peter,1963-
Norrga, Staffan,1968-
Teodorescu, Remus

CORPORATE BODY NAME - ALTERNATIVE RESPONSIBILITY

Ohio Library and Information Network.

ORIGINATING SOURCE

Date of Transaction
20160916081942.6
Cataloguing Rules (Descriptive Conventions))
rda

ELECTRONIC LOCATION AND ACCESS

Electronic name
 مطالعه متن کتاب 

[Book]

Y

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