In order to study the stability and fast dynamic of the power grid, modeling and identification of hydropower plant systems such as turbine, governor and excitation is required. Turbine is a mechanical device and usually identified through field tests. In this paper, the identification of the unit 8 of Abbaspour power plant is conducted. The linear and nonlinear model of the Francis turbine are introduced. These models show the dynamic relation of the electric power and wicket gate position. In this study, the test data are processed and analyzed using the identification toolbox of Matlab software. The linear model is based on the IEEEG2 model and the average of water start time is obtained 1.33 second. The results show lots of deviation in predicting low loads due to nonlinear behavior of turbine. For eliminating these faults, a modified non-linear polynomial model of turbine is identified. Validation of the identified nonlinear model shows its high accuracy in the modeling of turbine dynamic behavior.
Aghayari J, Salehzadeh R. Dynamic Modeling and Identification of The Hydro Turbine Using Field Test Data (Case Study: Abbaspour Power Plant). Iranian Dam and Hydroelectric Powerplant 2020; 7 (25) :73-63 URL: http://journal.hydropower.org.ir/article-1-183-en.html