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This book serves as a reference book for senior undergraduate and graduate students in power engineering programs, practicing engineers who deal with grid integration and operation of DER systems, design engineers, and researchers in the areas of electric power generation, transmission, distribution, and utilization. The book does not cover implementation details of controllers however, it contains adequate details for system analysts and control designers and describes various functions that theVSCcan perform in an electric power system, introduces different classes of applications of the VSC in electric power systems, provides a systematic approach to modeling a VSC-based system with respect to its class of application, presents a comprehensive and detailed control design approach for each class of applications, and illustrates the control design procedures and evaluates the performance, based on digital computer time-domain simulation studies. The text is organized in 13 chapters. Chapter 1 provides a brief introduction to the most commonly used electronic switches and converter configurations in the power system. The rest of the book is divided into two parts. The first part, Chapters 2–10, provides theory and presents fundamental modeling and design methodologies. The second part, Chapters 11–13, covers applications of theory and design methodologies, through three selected application cases: the static compensator (STATCOM), the forced-commutated back-to-back HVDC converter system, and the variable-speed wind-power systems based on the doubly fed asynchronous generator. The second part could have included more application varieties. However, only three application cases have been presented to highlight the main concepts, within a limited number of pages. The PSCAD/EMTDC software package has been used to generate most of the time-domain simulation results in the text. We would like to emphasize that the main purpose of the numerical examples in this book is to highlight the concepts and design methodologies. As such, the numerical values of some parameters may not be fully consistent with the values typically adopted for specific applications