Title :
Distributed generation system development based on various renewable energy resources
Author :
Ma Yiwei ; Yang Ping ; Guo Hongxia
Author_Institution :
Guangdong Key Lab. of Clean Energy Technol., South China Univ. of Technol., Guangzhou, China
Abstract :
In promotion of the new energy policy, the large-scale expansion of constructions of the wind and solar power is developing in China, whose random high-power electric energy fluctuation causes huge shock to the power grid. Confronting this important problem of the power system safe operation, it is really top urgent to build a feasible solution to develop the large scale new energy. Therefore, this paper raises a distributed generation system based on various renewable energy resources, adopting a small-sized combined generation equipments of unit capacity 100 kW max with wind, solar and biogas energies, and super capacitor and battery storage devices, which builds and installs near to the local loads center to supply it optimally in stable and safe, high reliability and less feeder loss mode. The operation performance of the demonstration project shows: the distributed generation system based on various renewable energy resources is an effective and feasible approach for its large-scale and efficient utilization purpose because of its particular distribution characteristics, direct power supply to the local loads and its little influence to the grid.
Keywords :
biofuel; distributed power generation; power grids; solar power; supercapacitors; wind power; battery storage devices; biogas energies; direct power supply; distributed generation system development; distribution characteristics; energy policy; high-power electric energy fluctuation; local loads center; power 100 kW; power grid; power system safe operation; renewable energy resources; small-sized combined generation equipments; solar energies; solar power; supercapacitor; utilization purpose; wind energies; wind power; Batteries; Capacitors; Distributed power generation; Power supplies; Wind power generation; Distributed Generation System; Local Loads; Power Grid; Power Supply; Renewable Energy Resources;
Conference_Titel :
Control Conference (CCC), 2011 30th Chinese
Conference_Location :
Yantai
Print_ISBN :
978-1-4577-0677-6
Electronic_ISBN :
1934-1768