@book{6345,
	author = {Geyer, Tobias,},
	title = {Model predictive control of high power converters and industrial drives /},
	publisher = {John Wiley & Sons, Incorporated,},
	year = {2017.},
	address = {United Kingdom :},
	edition = {First edition.},
	note = {Cover -- Title Page -- Copyright -- Dedication -- Contents -- Preface -- Acknowledgments -- List of Abbreviations -- About the Companion Website -- Part I Introduction -- Chapter 1 Introduction -- 1.1 Industrial Power Electronics -- 1.2 Control and Modulation Schemes -- 1.3 Model Predictive Control -- 1.4 Research Vision and Motivation -- 1.5 Main Results -- 1.6 Summary of this Book -- 1.7 Prerequisites -- References -- Chapter 2 Industrial Power Electronics -- 2.1 Preliminaries -- 2.2 Induction Machines -- 2.3 Power Semiconductor Devices -- 2.4 Multilevel Voltage Source Inverters -- 2.5 Case Studies -- References -- Chapter 3 Classic Control and Modulation Schemes -- 3.1 Requirements of Control and Modulation Schemes -- 3.2 Structure of Control and Modulation Schemes -- 3.3 Carrier-Based Pulse Width Modulation -- 3.4 Optimized Pulse Patterns -- 3.5 Performance Trade-Off for Pulse Width Modulation -- 3.6 Control Schemes for Induction Machine Drives -- Appendix 3.A: Harmonic Analysis of Single-Phase Optimized Pulse Patterns -- Appendix 3.B: Mathematical Optimization -- References -- Part II Direct Model Predictive Control with Reference Tracking -- Chapter 4 Predictive Control with Short Horizons -- 4.1 Predictive Current Control of a Single-Phase RL Load -- 4.2 Predictive Current Control of a Three-Phase Induction Machine -- 4.3 Predictive Torque Control of a Three-Phase Induction Machine -- 4.4 Summary -- References -- Chapter 5 Predictive Control with Long Horizons -- 5.1 Preliminaries -- 5.2 Integer Quadratic Programming Formulation -- 5.3 An Efficient Method for Solving the Optimization Problem -- 5.4 Computational Burden -- Appendix 5.A: State-Space Model -- Appendix 5.B: Derivation of the Cost Function in Vector Form -- References -- Chapter 6 Performance Evaluation of Predictive Control with Long Horizons.}
}
