Title :
A coordinated control method to smooth short-term power fluctuations of hybrid offshore renewable energy conversion system (HORECS)
Author :
Chuan Qin ; Ping Ju ; Feng Wu ; Yuqing Jin ; Qian Chen ; Lixia Sun
Author_Institution :
Coll. of Energy & Electr. Eng., Hohai Univ., Nanjing, China
fDate :
June 29 2015-July 2 2015
Abstract :
The hybrid offshore renewable energy conversion system (HORECS) consists of offshore wind, wave and tidal power generations. Its output power fluctuates, which may cause power quality problems. A coordinated control method is presented in this paper to smooth the short-term power fluctuations. The tidal generation system is used to compensate the wind and wave power fluctuations. According to the variations of the tidal speed, the proposed method is divided into two stages. When the tidal speed is larger than the cut-in speed, the output fluctuations are smoothed by the coordinated rotational speed control and pitch control of the tidal generator. When the tidal speed is smaller than the cut-in speed, the tidal generator can be operated as a fly-wheel energy storage, and the kinetic energy of the tidal generator is used to compensate the power fluctuations. Simulations are performed to illustrate the control performance.
Keywords :
direct energy conversion; flywheels; offshore installations; pitch control (position); power generation control; power generation reliability; power supply quality; tidal power stations; velocity control; wave power generation; wind power plants; HORECS smooth short-term power fluctuation; coordinated control method; coordinated rotational pitch control; coordinated rotational speed control; fly-wheel energy storage; hybrid offshore renewable energy conversion system; offshore tidal power generation; offshore wave power generation; offshore wind power generation; power quality problem; Fluctuations; Power smoothing; Rotors; Velocity control; Wind power generation; Wind turbines; Hybrid offshore renewable energy conversion system; pitch control; power smoothing; rotational speed control;
Conference_Titel :
PowerTech, 2015 IEEE Eindhoven
Conference_Location :
Eindhoven
DOI :
10.1109/PTC.2015.7232758