Control Circuits in Power Electronics
Practical Issues in Design and Implementation
Herausgeber: Castilla, Miguel
Control Circuits in Power Electronics
Practical Issues in Design and Implementation
Herausgeber: Castilla, Miguel
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Control circuits are a key element in the operation and performance of power electronics converters. This book describes practical issues related to the design and implementation of these control circuits, and is divided into three parts - analogue control circuits, digital control circuits, and new trends in control circuits.
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Control circuits are a key element in the operation and performance of power electronics converters. This book describes practical issues related to the design and implementation of these control circuits, and is divided into three parts - analogue control circuits, digital control circuits, and new trends in control circuits.
Produktdetails
- Produktdetails
- Energy Engineering
- Verlag: Institution of Engineering and Technology
- Seitenzahl: 464
- Erscheinungstermin: 16. Mai 2016
- Englisch
- Abmessung: 240mm x 161mm x 29mm
- Gewicht: 856g
- ISBN-13: 9781849198226
- ISBN-10: 1849198225
- Artikelnr.: 45006929
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Energy Engineering
- Verlag: Institution of Engineering and Technology
- Seitenzahl: 464
- Erscheinungstermin: 16. Mai 2016
- Englisch
- Abmessung: 240mm x 161mm x 29mm
- Gewicht: 856g
- ISBN-13: 9781849198226
- ISBN-10: 1849198225
- Artikelnr.: 45006929
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
1. Part I: Analogue control circuits
* Chapter 1: PWM-based sliding mode control schemes for DC/DC power
converters
* Chapter 2: Synthetic-ripple hysteretic controllers for DC/DC
converters
* Chapter 3: One-cycle controlled power inverters
2. Part II: Digital control circuits
* Chapter 4: Digital PWM control of high-frequency DC-DC switched-mode
power converters
* Chapter 5: Microcontroller-based electronic ballasts for
high-intensity discharge lamps
* Chapter 6: FPGA-based controllers for direct sliding mode control of
PWM boost rectifiers
* Chapter 7: DSP controllers for three-phase unity-power-factor
rectifiers
* Chapter 8: DSP controllers for grid-connected three-phase
voltage-sourced inverters
* Chapter 9: FPGA-DSP controllers for DC-DC converters in renewable
energy applications
* Chapter 10: Multilevel converters: topologies, modulation and control
3. Part III: New trends in control circuits for power electronics
* Chapter 11: State-of-the-art intelligent gate drivers for IGBT power
modules - monitoring, control and management at the heart of power
converters
* Chapter 12: Control of integrated switched capacitor power converters
* Chapter 13: DSP-based natural frame control schemes for three-phase
unity power factor rectifiers
* Chapter 14: Dual-core DSP for control and communication in AC
microgrids
* Chapter 15: Use of computational intelligence for designing power
electronics converters
* Chapter 1: PWM-based sliding mode control schemes for DC/DC power
converters
* Chapter 2: Synthetic-ripple hysteretic controllers for DC/DC
converters
* Chapter 3: One-cycle controlled power inverters
2. Part II: Digital control circuits
* Chapter 4: Digital PWM control of high-frequency DC-DC switched-mode
power converters
* Chapter 5: Microcontroller-based electronic ballasts for
high-intensity discharge lamps
* Chapter 6: FPGA-based controllers for direct sliding mode control of
PWM boost rectifiers
* Chapter 7: DSP controllers for three-phase unity-power-factor
rectifiers
* Chapter 8: DSP controllers for grid-connected three-phase
voltage-sourced inverters
* Chapter 9: FPGA-DSP controllers for DC-DC converters in renewable
energy applications
* Chapter 10: Multilevel converters: topologies, modulation and control
3. Part III: New trends in control circuits for power electronics
* Chapter 11: State-of-the-art intelligent gate drivers for IGBT power
modules - monitoring, control and management at the heart of power
converters
* Chapter 12: Control of integrated switched capacitor power converters
* Chapter 13: DSP-based natural frame control schemes for three-phase
unity power factor rectifiers
* Chapter 14: Dual-core DSP for control and communication in AC
microgrids
* Chapter 15: Use of computational intelligence for designing power
electronics converters
1. Part I: Analogue control circuits
* Chapter 1: PWM-based sliding mode control schemes for DC/DC power
converters
* Chapter 2: Synthetic-ripple hysteretic controllers for DC/DC
converters
* Chapter 3: One-cycle controlled power inverters
2. Part II: Digital control circuits
* Chapter 4: Digital PWM control of high-frequency DC-DC switched-mode
power converters
* Chapter 5: Microcontroller-based electronic ballasts for
high-intensity discharge lamps
* Chapter 6: FPGA-based controllers for direct sliding mode control of
PWM boost rectifiers
* Chapter 7: DSP controllers for three-phase unity-power-factor
rectifiers
* Chapter 8: DSP controllers for grid-connected three-phase
voltage-sourced inverters
* Chapter 9: FPGA-DSP controllers for DC-DC converters in renewable
energy applications
* Chapter 10: Multilevel converters: topologies, modulation and control
3. Part III: New trends in control circuits for power electronics
* Chapter 11: State-of-the-art intelligent gate drivers for IGBT power
modules - monitoring, control and management at the heart of power
converters
* Chapter 12: Control of integrated switched capacitor power converters
* Chapter 13: DSP-based natural frame control schemes for three-phase
unity power factor rectifiers
* Chapter 14: Dual-core DSP for control and communication in AC
microgrids
* Chapter 15: Use of computational intelligence for designing power
electronics converters
* Chapter 1: PWM-based sliding mode control schemes for DC/DC power
converters
* Chapter 2: Synthetic-ripple hysteretic controllers for DC/DC
converters
* Chapter 3: One-cycle controlled power inverters
2. Part II: Digital control circuits
* Chapter 4: Digital PWM control of high-frequency DC-DC switched-mode
power converters
* Chapter 5: Microcontroller-based electronic ballasts for
high-intensity discharge lamps
* Chapter 6: FPGA-based controllers for direct sliding mode control of
PWM boost rectifiers
* Chapter 7: DSP controllers for three-phase unity-power-factor
rectifiers
* Chapter 8: DSP controllers for grid-connected three-phase
voltage-sourced inverters
* Chapter 9: FPGA-DSP controllers for DC-DC converters in renewable
energy applications
* Chapter 10: Multilevel converters: topologies, modulation and control
3. Part III: New trends in control circuits for power electronics
* Chapter 11: State-of-the-art intelligent gate drivers for IGBT power
modules - monitoring, control and management at the heart of power
converters
* Chapter 12: Control of integrated switched capacitor power converters
* Chapter 13: DSP-based natural frame control schemes for three-phase
unity power factor rectifiers
* Chapter 14: Dual-core DSP for control and communication in AC
microgrids
* Chapter 15: Use of computational intelligence for designing power
electronics converters







