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Fault Ride through Enhancement of VSC-HVDC Connected Offshore Wind Power Plants
by
Wu Qiuwei
, Sun Yuanzhang
in
Alternative & Renewable Energy Sources & Technologies
/ balanced faults
/ fault ride through technique
/ feedforward DC voltage control
/ grid‐side faults
/ host power systems
/ Machine Design
/ Mechanics & Mechanical Engineering
/ offshore wind power plants
/ Sustainable Energy & Development
/ time‐domain simulations
/ unbalanced faults
/ VSC‐HVDC connections
2018
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Fault Ride through Enhancement of VSC-HVDC Connected Offshore Wind Power Plants
by
Wu Qiuwei
, Sun Yuanzhang
in
Alternative & Renewable Energy Sources & Technologies
/ balanced faults
/ fault ride through technique
/ feedforward DC voltage control
/ grid‐side faults
/ host power systems
/ Machine Design
/ Mechanics & Mechanical Engineering
/ offshore wind power plants
/ Sustainable Energy & Development
/ time‐domain simulations
/ unbalanced faults
/ VSC‐HVDC connections
2018
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Do you wish to request the book?
Fault Ride through Enhancement of VSC-HVDC Connected Offshore Wind Power Plants
by
Wu Qiuwei
, Sun Yuanzhang
in
Alternative & Renewable Energy Sources & Technologies
/ balanced faults
/ fault ride through technique
/ feedforward DC voltage control
/ grid‐side faults
/ host power systems
/ Machine Design
/ Mechanics & Mechanical Engineering
/ offshore wind power plants
/ Sustainable Energy & Development
/ time‐domain simulations
/ unbalanced faults
/ VSC‐HVDC connections
2018
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Fault Ride through Enhancement of VSC-HVDC Connected Offshore Wind Power Plants
Book Chapter
Fault Ride through Enhancement of VSC-HVDC Connected Offshore Wind Power Plants
2018
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Overview
Voltage source converter‐high voltage direct current (VSC‐HVDC) connections have become a new trend for long‐distance offshore wind power transmission. In order to facilitate the derivation of the feedforward DC voltage control based fault ride through (FRT) technique, this chapter describes the model of a VSC‐HVDC‐connected offshore wind power plant (WPP) with an external grid. It proposes a feedforward DC voltage control based FRT technique to control the AC voltage at the WPP collector network during grid‐side faults. Time‐domain simulations have been used to verify the efficacy of the proposed feedforward DC voltage control based FRT technique for VSC‐HVDC‐connected WPPs. Time‐domain simulation results shows that the proposed FRT scheme can successfully enable VSC‐HVDC‐connected WPPs to ride through balanced and unbalanced faults in host power systems, as well as faults in the WPP collector system, with a fast and robust response.
Publisher
John Wiley & Sons,John Wiley & Sons, Incorporated,John Wiley & Sons, Ltd
Subject
ISBN
1119236266, 9781119236269
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