This paper reviews the common control characteristics of a Statcom and presents the control strategies which may be applied for compensation of large wind farms. The Statcom's control and protection are modelled with the simulation tool Powerfactory (DigSilent). The analysis evaluates (i) a realistic test grid containing local wind turbines in the distribution network, and (ii) a large offshore windfarm connected to the transmission system.
AkhmatovV. (2003). Analysis of dynamic behaviour of electric power systems with large amount of wind power, Ph.D. dissertation, Technical University of Denmark, Kgs. Lyngby, Denmark, 272 p.
2.
Cigré (1999). Static Synchronous Compensator (Statcom), Edited by ErinmezI.A.FossA.M., Working Group 14.19, Report 144.
3.
Saad-SaoudZ.LisboaM.L.EkanayakeJ.B.JenkinsN.StrbacG. (1998). Application of Statcoms to wind farms, IEE Proceedings-C Generation, Transmission, Distribution, Vol. 145, no. 5, pp. 511–516.
4.
SchauderC.MethaH. (1993). Vector analysis and control of advanced static VAR compensators, IEE Proceedings-C Generation, Transmission, Distribution, Vol. 140, no. 4, pp. 299–306.
SøbrinkK.StöberR.SchettlerF.BergmannK.JenkinsN.EkanayakeJ.Saad-SaoudZ.LisboaM.L.StrbacG.PedersenJ.K.Helgelsen-PedersenK.O. (1998). Power Quality Improvements of Wind Farms, Eltra Information, 1998, 165 p. ISBN No.: 87-90707-05-2.
7.
WangH.F. (2000). Applications of damping torque analysis to Statcom control, Electrical Power and Energy Systems, Vol. 22, pp. 197–204.