Title :
Modeling and evaluation of short-term frequency control for participation of wind farms and energy storage in power systems
Author :
Hua Ye ; Zhiping Qi ; Wei Pei
Author_Institution :
Inst. of Electr. Eng., Beijing, China
Abstract :
With an increasing penetration of wind powerin isolated power systems, short-term frequency control is becoming a particular concern due to the reduction of system inertia and primary frequency regulation capacity. This paper presents a new average system frequency response (SFR) model with participation of wind farms and energy storage systems (ESSs) in frequency control. Based on this model, maximum rate of change of frequency (ROCOF) and maximum frequency deviation are calculated. Such two transient frequency indexes are used to guide adaptive participation of the ESS in the frequency control through a lookup table. The proposed model and frequency control method can provide an appropriate evaluation to the participation of wind farms and ESSs in the short-term frequency control of isolated power systems. Sudden load changes and wind power fluctuations are used to test the system frequency responses. The calculation results verify the validation of the proposed model and frequency control method.
Keywords :
frequency control; frequency response; power generation faults; power generation reliability; table lookup; wind power plants; ESS; average SFR model; average system frequency response model; energy storage system; load change; lookup table; maximum ROCOF; maximum frequency deviation; maximum rate of change of frequency; primary frequency regulation capacity reduction; short-term frequency control method; system inertia reduction; transient frequency index; wind farm; wind power fluctuation; wind powerin isolated power system; Energy storage; Frequency control; Frequency response; Power system stability; Wind farms; Wind power generation; Energy storage system (ESS); frequency deviation; primary frequency regulation; rate of change of frequency (ROCOF); system frequency response (SFR); wind power penetration;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993637