Shagufta Khan (Galgotias University, UP, INDIA), Suman Bhowmick (India Delhi Technological University)
Power-Flow Modelling of HVDC Transmission Systems
Shagufta Khan (Galgotias University, UP, INDIA), Suman Bhowmick (India Delhi Technological University)
Power-Flow Modelling of HVDC Transmission Systems
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This book deals exclusively with the power flow modelling of HVDC systems alongwith details of different type of HVDC systems, their configuration/connections, adopted control techniques, and gradually builds upto power flow modelling concept. It covers power flow modelling of HVDC systems integrated with renewable energy sources.
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This book deals exclusively with the power flow modelling of HVDC systems alongwith details of different type of HVDC systems, their configuration/connections, adopted control techniques, and gradually builds upto power flow modelling concept. It covers power flow modelling of HVDC systems integrated with renewable energy sources.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 268
- Erscheinungstermin: 23. Dezember 2022
- Englisch
- Abmessung: 158mm x 236mm x 22mm
- Gewicht: 558g
- ISBN-13: 9781032171661
- ISBN-10: 1032171669
- Artikelnr.: 64358529
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 268
- Erscheinungstermin: 23. Dezember 2022
- Englisch
- Abmessung: 158mm x 236mm x 22mm
- Gewicht: 558g
- ISBN-13: 9781032171661
- ISBN-10: 1032171669
- Artikelnr.: 64358529
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Dr. Shagufta Khan received her Ph.D. degree in Electrical Engineering from Delhi Technological University, Delhi, India. She is currently an Assistant Professor with the School of Electrical, Electronics and Communication Engineering, Galgotias University, Greater Noida, India. Her research interests include power systems and renewable energy. She has several publications in national and international journals and conferences including IEEE Transactions on Sustainable Energy, Electrical Power System Research (Elsevier), International Journal of Electrical Power and Energy Systems (Elsevier), Electrical Energy Journal (Springer), AIN Shams Engineering Journal (Elsevier), and Arabian Journal for Science and Engineering (Springer) to her credit. Prof. Suman Bhowmick received his Ph.D. in Electrical Engineering in 2010. He has been working as a Professor in the Department of Electrical Engineering, Delhi Technological University since 2012. His areas of interest are power systems in general, and FACTS and HVDC systems in particular. He has several publications in national and international journals and conferences to his credit. He has also authored a book on FACTS which was published by the CRC Press, USA in 2016.
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.
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.
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.
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.







