Buch, Englisch, 290 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 427 g
Buch, Englisch, 290 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 427 g
ISBN: 978-1-032-17167-8
Verlag: CRC Press
This book deals exclusively with the power-flow modelling of HVDC transmission systems. Different types of HVDC transmission systems, their configurations/connections and control techniques are covered in detail. Power-Flow modelling of both LCC- and VSC-based HVDC systems is covered in this book. Both the unified and the sequential power-flow methods are addressed. DC grid power-flow controllers and renewable energy resources like offshore wind farms (OWFs) are also incorporated into the power-flow models of VSC-HVDC systems. The effects of the different power-flow methods and HVDC control strategies on the power-flow convergence are detailed along with their implementation.
Features:
- Introduces the power-flow concept and develops the power-flow models of integrated AC/DC systems.
- Different types of converter control are modelled into the integrated AC/DC power-flow models developed.
- Both unified and the sequential power-flow methods are addressed.
- DC grid power-flow controllers like the IDCPFC and renewable energy resources like offshore wind farms (OWFs) are introduced and subsequently modelled into the power-flow algorithms.
- Integrated AC/DC power-flow models developed are validated by implementation in the IEEE 300-bus and European 1354-bus test networks incorporating different HVDC grids.
This book aims at researchers and graduate students in Electrical Engineering, Power Systems, and HVDC Transmission.
Zielgruppe
Academic
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
1. HVDC Transmission Systems. 2. Power-Flow Modelling of AC power systems integrated with LCC-based multiterminal DC (AC-MLDC) grids. 3. Power Flow Modelling of AC power systems integrated with VSC-based multiterminal DC (AC-MVDC) grids employing DC Slack-Bus ControlPower Flow. 4. Modelling of AC power systems integrated with VSC-based multiterminal DC (AC-MVDC) grids employing DC Voltage Droop Control. 5. Power Flow Modelling of AC power systems integrated with VSC-based multiterminal DC (AC-MVDC) grids incorporating Interline DC Power Flow Controller. 6. Power Flow Modelling of AC power systems integrated with VSC-based multiterminal DC (AC-MVDC) grids incorporating renewable energy sources.