Impacts of TCSC and FSC on the Power-Angle

Article Preview

Abstract:

The Characteristics of FSC (Fixed Series Compensation) and TCSC (Thyristor Controlled Series Capacitor) damping power-angle oscillation and increasing the limit of power transmission were analyzed. FSC can damp the power-angle in a certain extent. Based on the linear control combined with Bang-bang control strategy, TCSC can damp power-angle effectively. In the cases of only FSC, only TCSC and their combinations, simulation results demonstrate that TCSC is more effective than FSC in damping power-angle oscillation. A conclusion is made that taking effect and cost into consideration, TCSC and FSC in a certain percentage is appropriate.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 614-615)

Pages:

1484-1488

Citation:

Online since:

December 2012

Keywords:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Guo Jianbo,Wu Shouyuan,Li Guofu,etc.Study on Domestic-Manufactured Demo Project of 220kV TCSC for Power Transmission from Cheng County to Bikou in Gansu Province [J]. Power System Technology,2005,29(19):12-17

Google Scholar

[2] Wang Weizhou,Peng Xilan,He Shien.Operation and Maintenance of the First Home-Made 220 kV TCSC Equipment for Transmission line from Cheng County to Bikou in Gansu Province [J].Power System Technology,2007,31(1):50-54

Google Scholar

[3] R.M.Maliszewski,B.M.Pasternack,H.N.Scherer,M.Chamia.H.Frank,and L.Paulsson,"Power Flow Control in a Highly Integrated Transmission Network" CIGRE Paper 37-303,Paris,(1990)

Google Scholar

[4] Mathur R M.Thyristor-based Facts Controllers for Electrical Transmission System.Beijing: China Machine Press,(2005)

Google Scholar

[5] M.Erche et al.Improvement power system performance using power electronic equipment, CIGRE 14/37/38-02,August 1992.Paris

Google Scholar

[6] E.Larsen et al.Benefits of thyristor controlled series compensation,CIGRE 14/37/38-04, September (1992)

Google Scholar

[7] Li Guangqi.Power system transient analysis[M].Beijing: China Electric Power Press,(2006)

Google Scholar

[8] Cheng Hanxiang.Flexible AC transmission system[M].Beijing: China Machine Press,(2009)

Google Scholar

[9] Anderson P.M. Farmer R.G. Series compensation of power systems[M].Beijing:China Electric Power Press, (2008)

Google Scholar

[10] K.R.Padiyar,Analysis of Subsynchronous Resonance in Power Systems,Kluwer Academic Publishers,Boston,(1999)

Google Scholar

[11] H.F. Wang F.J. Swift,and M.Li."The Indices for Selecting the Best Locations of PSS or FACTS-Based Stabilizers in Multimachine Power System:A Comparison Study."IEE Proceedings-Generation Transmission Distribution,Vol.2,1997,pp.155-159

DOI: 10.1049/ip-gtd:19970736

Google Scholar

[12] H.F. Wang."Selection of Robust Installing Locations and Feedback Signals of FACTS-Based Stabilizers in Multimachine Power Systems." IEEE Transactions on Power System, Vol.2.1999,pp.569-574

DOI: 10.1109/59.761882

Google Scholar

[13] L.Ronco and F.L. Pagola."An Eigenvalue Sensitivity Approach to Location and Controller Design of Controllable Series Capacitors for Damping Power System Oscillations."IEEE Transactions on Power Systems,Vol.12,No.4,November 1997,pp.1660-1666

DOI: 10.1109/59.627873

Google Scholar

[14] Y.H. Song and A.T. Johns,Eds.Flexible AC Transmission Systems(FACTS),IEEE Press U.K., (1999)

Google Scholar