Title :
Generic 12-bus test system for wind power integration studies
Author :
Adamczyk, Andrzej ; Altin, Mufit ; Goksu, Omer ; Teodorescu, Remus ; Iov, Florin
Author_Institution :
Dept. of Energy Technol., Aalborg Univ., Aalborg, Denmark
Abstract :
High wind power penetration levels into power systems requires an appropriate power system model when assessing impact on the overall system stability. The model should capture the wide range of dynamics related to the wind integration studies, such as voltage control, synchronizing power control, inertial response, frequency control, damping of electromechanical oscillations, balanced and unbalanced fault management, etc. Hence, the power system components: conventional power plants with controls, transmission lines, transformers and loads should be represented accurately to achieve realistic power system characteristics. Additionally, the power system model should be simple and computationally manageable in order to simulate multiple scenarios with different control parameters in a reasonable time. In this paper, a generic power system model is presented in order to comprehend the wind integration studies with different penetration scenarios.
Keywords :
power generation control; power system dynamic stability; wind power plants; balanced fault management; conventional power plants; electromechanical oscillation damping; frequency control; generic 12-bus test system; generic power system model; inertial response; power system components; synchronizing power control; transformers; transmission lines; unbalanced fault management; voltage control; wind power integration study; wind power penetration level; Frequency control; Load modeling; Mathematical model; Oscillators; Power system stability; Stability analysis; Wind power generation; integration studies; power system modeling; power system stability and dynamics; wind power;
Conference_Titel :
Power Electronics and Applications (EPE), 2013 15th European Conference on
Conference_Location :
Lille
DOI :
10.1109/EPE.2013.6634758