DocumentCode
135153
Title
Stability improvement of an integration of an offshore wind farm and a marine-current farm using a static VAR compensator
Author
Li Wang ; Dinh-Nhon Truong
Author_Institution
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
fYear
2014
fDate
27-31 July 2014
Firstpage
1
Lastpage
5
Abstract
This paper presents the simulation results of using a static VAR compensator (SVC) to achieve damping improvement of an integration of an offshore wind farm (OWF) and a marine-current farm (MCF). The operating performance of the studied OWF is simulated by an equivalent aggregated permanent-magnet synchronous generator (PMSG) driven by an equivalent aggregated wind turbine (WT). An equivalent aggregated squirrel-cage rotor induction generator (SCIG) driven by an equivalent aggregated marine-current turbine (MCT) through an equivalent aggregated gearbox is used to simulate the operating characteristics of the MCF. A PID damping controller of the SVC is designed to contribute adequate damping to the dominant modes of the studied system under different operating conditions. A frequency-domain approach based on a linearized system model using root-loci technique and a time-domain scheme based on a nonlinear system model subject to a three-phase short-circuit fault at the power grid are systematically utilized to examine the effectiveness of the proposed control scheme. It can be concluded from the simulation results that the proposed SVC joined with the designed damping controller is capable of improving the stability of the studied system subject to various disturbances.
Keywords
asynchronous generators; gears; nonlinear control systems; offshore installations; permanent magnet generators; power generation control; power grids; short-circuit currents; squirrel cage motors; static VAr compensators; three-term control; wind power plants; OWF; PID damping controller; PMSG; SVC; damping controller; linearized system model; marine-current farm; marine-current turbine; nonlinear system model; offshore wind farm; permanent-magnet synchronous generator; power grid; root-loci technique; squirrel-cage rotor induction generator; stability improvement; static VAR compensator; three-phase short-circuit fault; time-domain scheme; wind turbine; Damping; Power system stability; Reactive power; Stability analysis; Static VAr compensators; Wind speed; Wind turbines; Offshore wind farm; marine-current farm; stability; static VAR compensator;
fLanguage
English
Publisher
ieee
Conference_Titel
PES General Meeting | Conference & Exposition, 2014 IEEE
Conference_Location
National Harbor, MD
Type
conf
DOI
10.1109/PESGM.2014.6939149
Filename
6939149
Link To Document