Integrated Model of DFIG and SFR for Frequency Regulation Control Research of Wind Turbine Generator
Author:
Affiliation:
1. College of Energy and Electrical Engineering Hohai University,Nanjing,China
2. Electric Power Research Institute, State Grid Zhejiang Electric Power Corporation,Hangzhou,China
Funder
National Natural Science Foundation of China
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9697403/9697404/09697900.pdf?arnumber=9697900
Reference15 articles.
1. An Improved Higher-order SFR Model of Large-scale Distributed Hybrid Power System
2. Analytical Method to Aggregate Multi-Machine SFR Model With Applications in Power System Dynamic Studies
3. Generic System Frequency Response Model for Power Grids With Different Generations
4. Analytical Modeling of Inertial and Droop Responses From a Wind Farm for Short-Term Frequency Regulation in Power Systems
5. Dynamic modeling of GE 1.5 and 3.6 MW wind turbine-generators for stability simulations
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1. Non-mechanistic Model of Doubly Fed Induction Generators on Artificial Neural Networks;2024 9th Asia Conference on Power and Electrical Engineering (ACPEE);2024-04-11
2. Optimization of a Virtual Synchronous Control Parameter for a Wind Turbine Generator Considering the Physical Constraint Boundary of Primary Frequency Regulation;Applied Sciences;2023-04-30
3. Fuzzy Frequency Droop Control of DFIG Wind Turbine Generators Adapted to Continuous Changes in Wind Speeds;IEEE Access;2023
4. Output Power Decision Indices of Wind Power Generation Participating in Fast Frequency Response;2022 Power System and Green Energy Conference (PSGEC);2022-08
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