DocumentCode :
2877243
Title :
Controls of hydraulic wind power transfer
Author :
Hamzehlouia, Sina ; Izadian, Afshin ; Pusha, Ayana ; Anwar, Sohel
Author_Institution :
Purdue Sch. of Eng. & Technol., IUPUI, Indianapolis, IN, USA
fYear :
2011
fDate :
7-10 Nov. 2011
Firstpage :
2475
Lastpage :
2480
Abstract :
The energy of wind can be transferred to the generator by employing a gearbox or through an intermediate medium such as hydraulic fluids. In this method, a high-pressure hydraulic system is utilized to transfer the energy produced from a wind turbine to a central generator. The speed control of wind driven hydraulic machinery is challenging, since the intermittent nature of wind imposes the fluctuation on the wind power generation and consequently varies the frequency of voltage. On the other hand, as the load of the generators increases, the frequency of the voltage drops. Therefore, hydraulically connected wind turbine and generator need to be controlled to maintain the frequency and compensate for the power demands. This paper introduces a closed loop gain scheduling flow control technique to maintain a constant frequency at the wind turbine generator. The governing equations of the renewable energy transfer system are derived and used to design the control system. The mathematical model is verified with a detailed model built using the SimHydraulics toolbox of MATLAB. The speed control profile obtained from a gain scheduling PI controller demonstrates a high performance speed regulation. The simulation results demonstrate the effectiveness of both the proposed model and the control technique.
Keywords :
PI control; angular velocity control; closed loop systems; control system synthesis; frequency control; gears; hydraulic systems; hydroelectric generators; power generation control; power generation scheduling; voltage control; wind power; wind power plants; wind turbines; MATLAB; PI controller; SimHydraulics toolbox; closed loop control; compensation; flow control; frequency control; gain scheduling; gearbox; hydraulic machinery; hydraulic system; hydraulic wind power transfer; mathematical model; renewable energy transfer system; speed control; voltage drops; wind power generation; wind turbine generator; Angular velocity; Equations; Fluids; Generators; Mathematical model; Pumps; Wind energy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IECON 2011 - 37th Annual Conference on IEEE Industrial Electronics Society
Conference_Location :
Melbourne, VIC
ISSN :
1553-572X
Print_ISBN :
978-1-61284-969-0
Type :
conf
DOI :
10.1109/IECON.2011.6119698
Filename :
6119698
Link To Document :
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