Switching Power Converters Medium and High Power 2nd Edition by Dorin Neacsu – Ebook PDF Instant Download/Delivery:9781466591929, 1466591927
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Product details:
ISBN 10: 1466591927
ISBN 13: 9781466591929
Author: Dorin O. Neacsu
An examination of all of the multidisciplinary aspects of medium- and high-power converter systems, including basic power electronics, digital control and hardware, sensors, analog preprocessing of signals, protection devices and fault management, and pulse-width-modulation (PWM) algorithms, Switching Power Converters: Medium and High Power, Second Edition discusses the actual use of industrial technology and its related subassemblies and components, covering facets of implementation otherwise overlooked by theoretical textbooks. The updated Second Edition contains many new figures, as well as new and/or improved chapters on: Thermal management and reliability Intelligent power modules AC/DC and DC/AC current source converters Multilevel converters Use of IPM within a “network of switches” concept Power semiconductors Matrix converters Practical aspects in building power converters Providing the latest research and development information, along with numerous examples of successful home appliance, aviation, naval, automotive electronics, industrial motor drive, and grid interface for renewable energy products, this edition highlights advancements in packaging technologies, tackles the advent of hybrid circuits able to incorporate control and power stages within the same package, and examines design for reliability from the system level perspective.
Switching Power Converters Medium and High Power 2nd Table of contents:
Chapter 1 Introduction to Medium- and High-Power Switching Converters
1.1 Market for Medium- and High-Power Converters
1.1.1 Technology Status
1.1.2 Transportation Electrification Systems
1.1.2.1 Automotive
1.1.2.2 Aviation
1.1.2.3 Railways
1.1.2.4 Marine Power Systems
1.1.3 Traditional Industrial Applications
1.1.3.1 Motor Drives
1.1.3.2 Grid-Tied Power Supplies
1.1.3.3 Medium Voltage
1.2 Book Coverage
1.3 Adjustable Speed Drives
1.3.1 AC/DC Converter
1.3.2 Intermediate Circuit
1.3.3 DC Capacitor Bank
1.3.4 Soft-Charge Circuit
1.3.5 DC Reactor
1.3.6 Brake Circuit
1.3.7 Three-Phase Inverter
1.3.8 Protection Circuits
1.3.9 Sensors
1.3.10 Motor Connection
1.3.11 Controller
1.4 Grid Interfaces or Distributed Generation
1.4.1 Grid Harmonics
1.4.2 Power Factor
1.4.3 DC Current Injection
1.4.4 Electromagnetic Compatibility and Electromagnetic Inference
1.4.5 Frequency and Voltage Variations
1.4.6 Maximum Power Connected at Low-Voltage Grid
1.5 Multiconverter Power Electronic Systems
1.6 Conclusion
References
PART I Conventional Power Converters
Chapter 2 High-Power Semiconductor Devices
2.1 A View on the Power Semiconductor Market
2.2 Power MOSFETs
2.2.1 Operation
2.2.2 Control
Chapter 3 Basic Three-Phase Inverters
3.1 High-Power Devices Operated as Simple Switches
3.2 Inverter Leg with Inductive Load Operation
Chapter 4 Carrier-Based Pulse Width Modulation and Operation Limits
4.1 Carrier-Based Pulse Width Modulation Algorithms: Historical Importance
Chapter 5 Vectorial PWM for Basic Three-Phase Inverters
5.1 Review of Space Vector Theory
Chapter 6 Practical Aspects in Building Three-Phase Power Converters
6.1 Selection of Power Devices in a Three-Phase Inverter
Chapter 7 Thermal Management and Reliability
7.1 Thermal Management
Chapter 8 Implementation of Pulse Width Modulation Algorithms
8.1 Analog Pulse Width Modulation Controllers
Chapter 9 Practical Aspects in Closed-Loop Control
9.1 Role, Schematics
Chapter 10 Intelligent Power Modules
10.1 Market and Technology Considerations
PART II Other Topologies
Chapter 11 Resonant Three-Phase Converters
11.1 Reducing Switching Losses through Resonance versus Advanced PWM Devices
…
Chapter 12 Component-Minimized Three-Phase Power Converters
12.1 Solutions for Reduction of Number of Components
Chapter 13 AC/DC Grid Interface Based on the Three-Phase Voltage Source Converter
13.1 Particularities—Control Objectives—Active Power Control
Chapter 14 Parallel and Interleaved Power Converters
14.1 Comparison between Converters Built of High-Power Devices and Solutions Based on Multiple Parallel Lower-Power Devices
Chapter 15 AC/DC and DC/AC Current Source Converters
15.1 Introduction
Chapter 16 AC/AC Matrix Converters as a 9-Switch Topology
16.1 Background
Chapter 17 Multilevel Converters
17.1 Principle and Hardware Topologies
Chapter 18 Use of IPM within a “Network of Switches” Concept
18.1 Grid Interface for Extended Power Range
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Tags: Dorin Neacsu, Switching Power, Converters


