Title :
Study on coordinated control of load and Distributed Generation
Author :
Xiaodong Li ; Guangyi Liu ; Hongjie Jia ; Zhanyong Yang ; Yang Yang ; Shixiong Fan
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
Abstract :
Distributed Generation ( DG ) using renewable energy to generate power in distribution networks is influenced by natural conditions, and its output power is fluctuant, affecting whole system operation. According to load voltage characteristics and features of DG, this paper presents a method of coordinated control of load and distributed generation based on Volt-Var control, and analyzes the effectiveness of the method under different conditions. It could make load changes track the output power of DG and mitigate power fluctuations by voltage regulation, so it reduces or even eliminates the influence of power fluctuation on power grid. The simulation results of the IEEE 13 nodes test feeder system by GridLAB-D simulation platform show that changes of constant impedance and constant current loads could track DG output power by voltage regulation. Furthermore, load characteristics and voltage adjustment period have some influences on the tracking effect.
Keywords :
IEEE standards; distributed power generation; fluctuations; load regulation; power distribution control; power generation control; power grids; renewable energy sources; voltage control; DG coordinated control; GridLAB-D simulation platform; IEEE 13 node test feeder system; distributed generation coordinated control; distribution network; load coordinated control; load voltage characteristics; power fluctuation mitigation; power grid; renewable energy; volt-var control; voltage adjustment; voltage regulation; Abstracts; Distributed power generation; Electricity; Fluctuations; Radio frequency; Reactive power; Wind power generation; Distributed generation; Load Characteristics; Power Fluctuations; Voltage Regulation;
Conference_Titel :
Electricity Distribution (CICED), 2014 China International Conference on
Conference_Location :
Shenzhen
DOI :
10.1109/CICED.2014.6991828