Towards integrated wind farm control: Interfacing farm flow and power plant controls

被引:3
|
作者
Kölle K. [1 ]
Göçmen T. [2 ]
Garcia-Rosa P.B. [1 ]
Petrović V. [3 ]
Eguinoa I. [4 ]
Vrana T.K. [1 ]
Long Q. [2 ]
Pettas V. [5 ]
Anand A. [6 ]
Barlas T.K. [2 ]
Cutululis N. [2 ]
Manjock A. [7 ]
Tande J.O. [1 ]
Ruisi R. [8 ]
Bossanyi E. [8 ]
机构
[1] SINTEF Energy Research, Trondheim
[2] DTU Wind and Energy Systems, Technical University of Denmark, Roskilde
[3] ForWind, University of Oldenburg, Oldenburg
[4] Wind Energy Department, Centro Nacional de Energías Renovables (CENER), Navarra
[5] Stuttgart Wind Energy, University of Stuttgart, Stuttgart
[6] Wind Energy Institute, Technical University of Munich, Munich
[7] Renewables Certification, DNV, Hamburg
[8] Group Research and Development, DNV, Bristol
基金
欧盟地平线“2020”;
关键词
active power reserves; power system services; wake control; wind farm control; wind farm flow control; wind power plant control;
D O I
10.1002/adc2.105
中图分类号
学科分类号
摘要
Concepts for control of wind farms (WFs) can be clustered into two distinct concepts, namely, wind power plant control (WPPC) and wind farm flow control (WFFC). WPPC is concerned with the connection to the power system, compliance with grid codes, and provision of power system services. This comprises the traditional way of operating a WF without consideration of aerodynamic turbine interaction. However, flow phenomena like wake effects can have a large impact on the overall performance of the WF. WFFC considers such aerodynamic phenomena in the WF operation. It can be viewed as a new feature that shall be integrated with the existing control functions. The interaction of these different control concepts is discussed in this article, leading to an identification of the challenges whose solutions will contribute to a successful integration of electrical system and aerodynamic aspects of WF control. © 2022 The Authors. Advanced Control for Applications: Engineering and Industrial Systems published by John Wiley & Sons Ltd.
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