Title :
On Optimizing the Aerodynamic Load Acting on the Turbine Shaft of PMSG-Based Direct-Drive Wind Energy Conversion System
Author :
Jiawei Chen ; Jie Chen ; Chunying Gong
Author_Institution :
Coll. of Autom. Eng., Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
Abstract :
The blade´s rotational sampling to the spatial distributed wind velocities will induce 3P oscillating aerodynamic torque during the wind energy generation process. This causes the turbine drive train bare high aerodynamic load because the generator is driven by this aerodynamic torque through it. Moreover, the system´s inherent resonant mode will be also induced by the aerodynamic load, causing fatal damage to the whole system. To damp the serious aerodynamic load of the permanent-magnet-synchronous-generator-based direct-drive wind energy conversion system (WECS), a new power control strategy with damping injection is proposed in this paper. The proposed method is realized by adding a compensation torque, which is proportional to the small-signal value of the generator speed, into the system torque control loop. Both the aerodynamic load and the system´s inherent resonant mode could be well damped if the proposed method were adopted. Theoretic analysis is verified by experimental results performed by a 10-kW WECS established in the laboratory.
Keywords :
aerodynamics; blades; compensation; damping; direct energy conversion; drives; permanent magnet generators; shafts; synchronous generators; wind power; wind turbines; 3P oscillating aerodynamic torque; PMSG-based direct-drive wind energy conversion system; WECS; aerodynamic load; blade; compensation torque; damping injection; permanent-magnet-synchronous-generator; power 10 kW; power control strategy; resonant mode; rotational sampling; spatial distributed wind velocities; system torque control loop; turbine drive train; turbine shaft; wind energy generation process; Aerodynamics; Damping; Generators; Shafts; Torque; Wind speed; Wind turbines; Aerodynamic load; damping injection; natural resonant mode suppression; permanent-magnet synchronous generator (PMSG); power spectrum density (PSD); wind power generation;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2013.2284148