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Integrating Wind Energy to Weak Powe...
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Chaudhuri, Nilanjan Ray.
Integrating Wind Energy to Weak Power Grids using High Voltage Direct Current Technology
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Integrating Wind Energy to Weak Power Grids using High Voltage Direct Current Technology/ by Nilanjan Ray Chaudhuri.
作者:
Chaudhuri, Nilanjan Ray.
面頁冊數:
XVII, 241 p. 152 illus., 35 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Renewable energy resources. -
電子資源:
https://doi.org/10.1007/978-3-030-03409-2
ISBN:
9783030034092
Integrating Wind Energy to Weak Power Grids using High Voltage Direct Current Technology
Chaudhuri, Nilanjan Ray.
Integrating Wind Energy to Weak Power Grids using High Voltage Direct Current Technology
[electronic resource] /by Nilanjan Ray Chaudhuri. - 1st ed. 2019. - XVII, 241 p. 152 illus., 35 illus. in color.online resource.
Chapter1: Introduction -- Chapter2: Modeling and Control of HVDC Systems -- Chapter3: Modeling and Control of Inverter-Interfaced Wind Farms -- Chapter4: Integration of Onshore Wind Farms to a Weak AC Grid Interfacing LCC HVDC Transmission -- Chapter5: Power System Restoration using DFIG-Based Wind Farms and VSC-HVDC Transmission Power System Restoration using DFIG-Based Wind Farms and VSC-HVDC Transmission Systems -- Chapter6: Integration of Wind Farms using MTDC Grids: Frequency Support Perspective.
This book is the first of its kind to provide a comprehensive framework for connecting wind farms to weak power grids using High Voltage DC technology. Most onshore wind energy potential is located in areas that are hardly inhabited and the majority of wind energy that is being harnessed by European countries is currently offshore, both sourced from locations that lack the presence of a strong power grid. This book focuses on the many challenges the wind farm industry faces integrating both onshore and offshore wind to ‘weak’ grids using HVDC technology. Through case studies and illustrative examples the author presents a framework for theoretical and mathematical analysis of HVDC technology, its application and successful integration of onshore and offshore wind farms. Presents a unified approach for integrating onshore and offshore wind energy to existing AC systems through MTDC grids; Includes an extensive treatment of onshore wind farms connected to LCC HVDC systems; Provides a comprehensive analysis of offshore wind farms connected to VSC HVDC systems.
ISBN: 9783030034092
Standard No.: 10.1007/978-3-030-03409-2doiSubjects--Topical Terms:
563364
Renewable energy resources.
LC Class. No.: TJ807-830
Dewey Class. No.: 621.042
Integrating Wind Energy to Weak Power Grids using High Voltage Direct Current Technology
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Chapter1: Introduction -- Chapter2: Modeling and Control of HVDC Systems -- Chapter3: Modeling and Control of Inverter-Interfaced Wind Farms -- Chapter4: Integration of Onshore Wind Farms to a Weak AC Grid Interfacing LCC HVDC Transmission -- Chapter5: Power System Restoration using DFIG-Based Wind Farms and VSC-HVDC Transmission Power System Restoration using DFIG-Based Wind Farms and VSC-HVDC Transmission Systems -- Chapter6: Integration of Wind Farms using MTDC Grids: Frequency Support Perspective.
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This book is the first of its kind to provide a comprehensive framework for connecting wind farms to weak power grids using High Voltage DC technology. Most onshore wind energy potential is located in areas that are hardly inhabited and the majority of wind energy that is being harnessed by European countries is currently offshore, both sourced from locations that lack the presence of a strong power grid. This book focuses on the many challenges the wind farm industry faces integrating both onshore and offshore wind to ‘weak’ grids using HVDC technology. Through case studies and illustrative examples the author presents a framework for theoretical and mathematical analysis of HVDC technology, its application and successful integration of onshore and offshore wind farms. Presents a unified approach for integrating onshore and offshore wind energy to existing AC systems through MTDC grids; Includes an extensive treatment of onshore wind farms connected to LCC HVDC systems; Provides a comprehensive analysis of offshore wind farms connected to VSC HVDC systems.
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