Power electronics system modeling and control

Author: Xu Dehong
Publisher:
Publish Date: 2006-01-01
Features: This book focuses on introducing the methods for establishing dynamic models of power electronic systems and the design methods of control systems. The modeling and control technology of power electronic systems involve power conversion technology, electrical and electronic technology, automatic control theory, and other fields, making it a multidisciplinary applied technology. The book covers the following content: power electronic system modeling methods such as state-space averaging, average switch network models, and unified circuit models, stability issues of current peak control and methods to improve stability, feedback control design of DC/DC converters, dynamic models of three-phase PWM rectifiers and three-phase PWM inverters, decoupling control of three-phase PWM AC systems, space vector modulation (SVM) methods for three-phase PWM AC systems, dynamic models of DC/DC converter parallel systems and current sharing control, and dynamic models of inverter parallel systems and current sharing control. This book can serve as a graduate textbook for students majoring in power electronics and electric drive or related fields, and can also be used as a reference for engineering technicians engaged in the development and design of power electronic devices, frequency converters, electronic power supplies, and other related technologies. This book focuses on introducing the methods for establishing dynamic models of power electronic systems and the design methods of control systems. The modeling and control technology of power electronic systems involve power conversion technology, electrical and electronic technology, automatic control theory, and other fields, making it a multidisciplinary applied technology. The book covers the following content: power electronic system modeling methods such as state-space averaging, average switch network models, and unified circuit models, stability issues of current peak control and methods to improve stability, DC/DC converter feedback control design, dynamic models of three-phase PWM rectifiers and three-phase PWM inverters, decoupling control of three-phase PWM AC systems, space vector modulation (SVM) methods for three-phase PWM AC systems, dynamic models of DC/DC converter parallel systems and current sharing control, and dynamic models of inverter parallel systems and current sharing control. This book can serve as a graduate textbook for students majoring in power electronics and electric drive or related fields, and can also be used as a reference for engineering technicians engaged in the development and design of power electronic devices, frequency converters, electronic power supplies, and other related technologies.

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