VSC-FACTS-HVDC: Modelling, Analysis and Simulation in Power Grids provides comprehensive coverage of VSC-FACTS and VSC-HVDC systems within the context of high-voltage Smart Grids modelling and simulation. Readers are presented with an examination of the advanced computer modelling of the VSC-FACTS and VSC-HVDC systems for steady-state, optimal solutions, state estimation and transient stability analyses, including numerous case studies and practical examples.
Key features:
* Wide-ranging treatment of the VSC achieved by assessing basic operating principles, topology structures, control algorithms and utility-level applications.
* Details advanced models of VSC-FACTS and VSC-HVDC equipment, suitable for a wide range of power network-wide studies, such as power flows, optimal power flows, state estimation and dynamic simulations.
* Contains numerous case studies and practical examples, including cases of multi-terminal VSC-HVDC systems.
* MATLAB software and Power System Computer Aided Design (PSCAD) scripts are provided to enable the reader to gain hands-on experience.
* Detailed coverage of electromagnetic transient studies of VSC-FACTS and VSC-HVDC systems using the de-facto industry standard PSCAD(TM)/EMTDC(TM) simulation package.
An essential guide for utility engineers, academics, and research students as well as industry managers, engineers in equipment design and manufacturing, and consultants.
VSC-FACTS-HVDC: Modelling, Analysis and Simulation in Power Grids provides comprehensive coverage of VSC-FACTS and VSC-HVDC systems within the context of high-voltage Smart Grids modelling and simulation. Readers are presented with an examination of the advanced computer modelling of the VSC-FACTS and VSC-HVDC systems for steady-state, optimal solutions, state estimation and transient stability analyses, including numerous case studies and practical examples.
Key features:
* Wide-ranging treatment of the VSC achieved by assessing basic operating principles, topology structures, control algorithms and utility-level applications.
* Details advanced models of VSC-FACTS and VSC-HVDC equipment, suitable for a wide range of power network-wide studies, such as power flows, optimal power flows, state estimation and dynamic simulations.
* Contains numerous case studies and practical examples, including cases of multi-terminal VSC-HVDC systems.
* MATLAB software and Power System Computer Aided Design (PSCAD) scripts are provided to enable the reader to gain hands-on experience.
* Detailed coverage of electromagnetic transient studies of VSC-FACTS and VSC-HVDC systems using the de-facto industry standard PSCAD(TM)/EMTDC(TM) simulation package.
An essential guide for utility engineers, academics, and research students as well as industry managers, engineers in equipment design and manufacturing, and consultants.
Enrique Acha
Computer Science Electrical & Electronics Engineering Elektrotechnik u. Elektronik Energie Energietechnik Energy Grid & Cloud Computing Grid- u. Cloud-Computing Informatik Leistungselektronik Power Electronics Power Technology & Power Engineering