Title :
Development of a 4 MW full-size wind-turbine test bench
Author :
Averous, Nurhan Rizqy ; Stieneker, Marco ; Kock, Stefan ; Andrei, Cristian ; Helmedag, Alexander ; De Doncker, Rik W. ; Hameyer, Kay ; Jacobs, Georg ; Monti, Antonello
Author_Institution :
Center for Wind Power Drives, RWTH Aachen Univ., Aachen, Germany
Abstract :
The in-field validation of wind turbines behavior is very time consuming and cost intensive, especially when fault ride-through (FRT) tests are conducted. Full-size wind-turbine test benches allow a realistic operation of wind turbines in an artificial environment. Due to the independency of wind and grid conditions, the cost and duration of the test program and certification can be reduced. This paper presents the development of 4 MW full-size wind-turbine test bench following a multi-physics hardware in-the-loop (HiL) concept. With the currently installed test bench setup, a synchronization of the device-under-test converters is possible. Through the measurement results of the test programs conducted on the test bench, the capability of the test bench in replicating the field conditions is demonstrated. In addition, a time consuming efficiency measurement can be performed with the reduced duration on the test bench. This shows another main benefit of the test bench compared to the conventional test method for wind turbines.
Keywords :
power generation faults; power generation reliability; power grids; wind turbines; FRT test; HiL; device under test; fault ride through test; grid conditions; multiphysics hardware in the loop; power 4 MW; synchronization; wind conditions; wind turbine test bench; Harmonic analysis; Power electronics; Power system harmonics; Real-time systems; Standards; Torque; Wind turbines;
Conference_Titel :
Power Electronics for Distributed Generation Systems (PEDG), 2015 IEEE 6th International Symposium on
Conference_Location :
Aachen
DOI :
10.1109/PEDG.2015.7223108