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This fourth and last volume is devoted to DC-AC conversion, i.e. to inverters. For the same reasons as for the choppers, such converters have much evolved recently: multiplied uses of the pulse width modulation. A book reviewing the last progress in the field was therefore particularly needed.
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This fourth and last volume is devoted to DC-AC conversion, i.e. to inverters. For the same reasons as for the choppers, such converters have much evolved recently: multiplied uses of the pulse width modulation. A book reviewing the last progress in the field was therefore particularly needed.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Springer Berlin Heidelberg
- Seitenzahl: 444
- Erscheinungstermin: 6. Dezember 2012
- Englisch
- ISBN-13: 9783642503221
- Artikelnr.: 53396786
- Verlag: Springer Berlin Heidelberg
- Seitenzahl: 444
- Erscheinungstermin: 6. Dezember 2012
- Englisch
- ISBN-13: 9783642503221
- Artikelnr.: 53396786
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
1 Introduction and Presentation.- 1.1 Types of Inverters: Principles.- 1.2 Types of Semiconductor Devices. Supply and Load Imperfections. Filters.- 1.3 Principal Applications. Consequences on the Study.- 2 Voltage-Source Inverters with One Square-Pulse per Half-Cycle.- 2.1 Single-Phase Inverter with Centre-Tapped Transformer.- 2.2 Single-Phase Half-Bridge Inverter.- 2.3 Single-Phase Full-Bridge Inverter.- 2.4 Three-Phase Full-Bridge Inverter.- 2.5 Input Filter.- 2.6 Output Filter.- 3 Pulse-Width-Modulated Voltage-Source Inverters.- 3.1 Single-Phase Half-Bridge Inverter.- 3.2 Three-Phase Full-Bridge Inverter.- 3.3 Single-Phase Full-Bridge Inverter.- 3.4 Computed Modulation.- 4 Commutations in Voltage-Source Inverters.- 4.1 Commutation of the Bipolar Transistor in Full-Wave Inverters.- 4.2 Commutations of the Bipolar Transistor in PWM Inverters.- 4.3 GTO Thyristor Commutations.- 4.4 Field Effect Transistor Commutations.- 5 Current-Source Inverters.- 5.1 Single-Phase Inverters.- 5.2 Full-Bridge Three-Phase Inverter.- 5.3 Feeding an Inductive Load.- 5.4 Notes on the Configurations with a Pulse Number Greater than 6.- 5.5 Notes on the Computation of the Current-Source Inverter Input Filter.- 6 Resonant Inverters.- 6.1 Series Resonant Inverter.- 6.2 Parallel Resonant Inverter.- 6.3 Resonant Supplies.- Appendices.- Appendix A: Input Filter in Voltage-Source Inverters.- A.1 Inverters with Two "Switches" per Phase.- A.2 Full-Bridge Single-Phase Inverter.- Appendix B: "Sinusoidal" Voltage-Source Inverters.- B.1 Voltage Waveform.- B.2 Production of Optimized Waveforms.- B.3 Variation in the Output Voltage.- B.4 The most Usual Type of Configuration.- Appendix C: Forced Turn-Off of Thyristors in Voltage-Source Inverters.- C.1 Parallel Commutation by Oscillating Circuit.- C.2Parallel Commutation by Capacitor.- C.3 Series Commutation.- Appendix D: PWM Rectifier.- D.1 The Structure.- D.2 The Converter Alone.- D.3 The Converter and its Input Filter.- D.4 The Converter with its Input and Output Filters.- Appendix E: Use of the Four-Quadrant Chopper as a PWM Rectifier.- E.1 "Switch" Control.- E.2 Current Harmonics Taken from the Supply.
1 Introduction and Presentation.- 1.1 Types of Inverters: Principles.- 1.2 Types of Semiconductor Devices. Supply and Load Imperfections. Filters.- 1.3 Principal Applications. Consequences on the Study.- 2 Voltage-Source Inverters with One Square-Pulse per Half-Cycle.- 2.1 Single-Phase Inverter with Centre-Tapped Transformer.- 2.2 Single-Phase Half-Bridge Inverter.- 2.3 Single-Phase Full-Bridge Inverter.- 2.4 Three-Phase Full-Bridge Inverter.- 2.5 Input Filter.- 2.6 Output Filter.- 3 Pulse-Width-Modulated Voltage-Source Inverters.- 3.1 Single-Phase Half-Bridge Inverter.- 3.2 Three-Phase Full-Bridge Inverter.- 3.3 Single-Phase Full-Bridge Inverter.- 3.4 Computed Modulation.- 4 Commutations in Voltage-Source Inverters.- 4.1 Commutation of the Bipolar Transistor in Full-Wave Inverters.- 4.2 Commutations of the Bipolar Transistor in PWM Inverters.- 4.3 GTO Thyristor Commutations.- 4.4 Field Effect Transistor Commutations.- 5 Current-Source Inverters.- 5.1 Single-Phase Inverters.- 5.2 Full-Bridge Three-Phase Inverter.- 5.3 Feeding an Inductive Load.- 5.4 Notes on the Configurations with a Pulse Number Greater than 6.- 5.5 Notes on the Computation of the Current-Source Inverter Input Filter.- 6 Resonant Inverters.- 6.1 Series Resonant Inverter.- 6.2 Parallel Resonant Inverter.- 6.3 Resonant Supplies.- Appendices.- Appendix A: Input Filter in Voltage-Source Inverters.- A.1 Inverters with Two "Switches" per Phase.- A.2 Full-Bridge Single-Phase Inverter.- Appendix B: "Sinusoidal" Voltage-Source Inverters.- B.1 Voltage Waveform.- B.2 Production of Optimized Waveforms.- B.3 Variation in the Output Voltage.- B.4 The most Usual Type of Configuration.- Appendix C: Forced Turn-Off of Thyristors in Voltage-Source Inverters.- C.1 Parallel Commutation by Oscillating Circuit.- C.2Parallel Commutation by Capacitor.- C.3 Series Commutation.- Appendix D: PWM Rectifier.- D.1 The Structure.- D.2 The Converter Alone.- D.3 The Converter and its Input Filter.- D.4 The Converter with its Input and Output Filters.- Appendix E: Use of the Four-Quadrant Chopper as a PWM Rectifier.- E.1 "Switch" Control.- E.2 Current Harmonics Taken from the Supply.







