Title :
Revisiting damping performance of the queensland network under wind power penetration
Author :
Modi, Nilesh ; Saha, Tapan K.
Author_Institution :
Sch. of Inf. Technol. & Electr. Eng., Univ. of Queensland, Brisbane, QLD, Australia
Abstract :
To meet Australian renewable energy target of generating 20% of renewable energy by 2020, large scale wind farms are being planned to be connected to the Queensland network. Considering this large scale wind power integration, it is of prime importance to investigate its influence on power system stability. In this paper, small-signal stability of the Queensland network has been re-visited considering near future wind power penetration. The expected wind power is integrated to the nearest available high voltage bus of the grid via step up transformer and transmission line with appropriate capacity. Aggregated doubly fed induction generator model is used to simulate wind farms. This paper investigates the impact of wind power integration on the damping of electromechanical modes of the Queensland grid. Wind power is accommodated by considering load growth and generator displacement individually for getting useful insight into its impact on damping of the grid. The sensitivity of the system damping performance under large scale wind power integration is assessed and presented through eigenvalue analysis. PSS/E and Mudpack software is used to carry out simulations.
Keywords :
asynchronous generators; eigenvalues and eigenfunctions; power system stability; power transformers; power transmission lines; wind power plants; Australian renewable energy; Mudpack software; PSS/E software; Queensland network damping performance; aggregated doubly fed induction generator model; eigenvalue analysis; electromechanical mode damping; generator displacement; large scale wind farms; large scale wind power integration; load growth; power system stability; small-signal stability; system damping performance sensitivity; transformer; transmission line; wind power penetration; Damping; Generators; Load modeling; Power system stability; Wind farms; Wind power generation; Wind turbines; doubly fed induction generator; small-signal stability; wind farm; wind power generation;
Conference_Titel :
Power and Energy Society General Meeting, 2012 IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4673-2727-5
Electronic_ISBN :
1944-9925
DOI :
10.1109/PESGM.2012.6344747