DocumentCode :
739937
Title :
Modeling, Control Strategy, and Power Conditioning for Direct-Drive Wave Energy Conversion to Operate With Power Grid
Author :
Feng Wu ; Ping Ju ; Xiao-Ping Zhang ; Qin, Chunbin ; Peng, G.J. ; Huang, Heng ; Fang, Jianwu
Author_Institution :
Coll. of Energy & Electr. Eng., Hohai Univ., Nanjing, China
Volume :
101
Issue :
4
fYear :
2013
fDate :
4/1/2013 12:00:00 AM
Firstpage :
925
Lastpage :
941
Abstract :
The direct-drive wave energy conversion (WEC) system adopts direct-drive power takeoff technique and the linear permanent magnet generate (LPMG) is coupled directly to the floater, which leads to simple configuration and high efficiency. This type of device usually has common features in term of structure, model, optimal control strategy, and power conditioning. Taking the AWS as the example, the models of the direct-drive WEC are first presented, and recommendations are also proposed for their applications. To extract maximum power from the wave, the AWS has to be regulated in resonance with the wave. Different types of control strategy using mechanical and electrical devices have been developed. Their features and applications are compared and discussed. An optimal control strategy, which enables AWS extracting maximum power from the irregular wave, is proposed. Since the floater reciprocates, not only the magnitude but also the direction of the translator motion speed changes. In this condition, the frequency, terminal voltage, and output active power of the LPMG vary. These features may not satisfy the requirements of the grid code for the integration of wave generation into power grid. Hence, the power conditioner is very important for the integration of the AWS into the power grid. The power conditioners are developed to integrate the AWS into the power grid, and the application of the energy storage in smoothing the output power of the AWS is also studied.
Keywords :
optimal control; permanent magnet generators; power generation control; power grids; sustainable development; wave power plants; AWS; LPMG; direct-drive WEC system; direct-drive power takeoff technique; direct-drive wave energy conversion; electrical devices; energy storage application; floater reciprocates; grid code; irregular wave; linear permanent magnet generator; mechanical devices; optimal control strategy; output active power; output power smoothing; power conditioning; power grid; terminal voltage; translator motion speed changes; wave generation integration; Energy conversion; Energy management; Energy storage; Generators; Mathematical model; Optimal control; Permanent magnets; Power conditioning; Power distribution; Power grids; Wave functions; Archimedes wave swing; control; direct drive; modeling; power conditioning; wave energy;
fLanguage :
English
Journal_Title :
Proceedings of the IEEE
Publisher :
ieee
ISSN :
0018-9219
Type :
jour
DOI :
10.1109/JPROC.2012.2235811
Filename :
6425392
Link To Document :
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