Browse > Article
http://dx.doi.org/10.5370/JEET.2016.11.5.1108

A Study on the Multiple FACTS Control for Ensuring the Voltage Stability in Jeju Island System  

Kang, Sang-Gyun (School of Electrical Engineering & Railway, Kyungil University, Korea.)
Bae, Moonsung (School of Electrical Engineering, Korea University, Korea.)
Han, Youngsun (Department of Electronic Engineering, Kyungil University, Korea.)
Yoon, Dong-Hee (Corresponding Author: Department of New & Renewable Energy, Kyungil Univerity, Korea.)
Publication Information
Journal of Electrical Engineering and Technology / v.11, no.5, 2016 , pp. 1108-1115 More about this Journal
Keywords
Multi-FACTS; Reactive power compensation; Voltage stability; Effective reactive power (Q) reserve (EQR); Sensitivity analysis; GV analysis;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 R. A. Schuleter, S. Liu, and K. Ben-Kilani, “Justification of the voltage stability security assessment and diagnostic procedure using a bifurcation substation method,” IEEE Trans. Power Syst., vol. 15, no. 3, pp. 1105-1111, Aug. 2000.   DOI
2 S. Seo, S. G. Kang, Y. H. Choi, D. J. Kim, and B. Lee, “Verification of effective reactive power reserve with respect to reactive power load demands in the power system,” in Power and Energy Society General Meeting, 2010 IEEE, 2010, pp. 1-7.
3 Y. H. Choi, S. Seo, S. Kang, and B. Lee, “Justification of Effective Reactive Power Reserves With Respect to a Particular Bus Using Linear Sensitivity,” Power Systems, IEEE Transactions on, vol. 26, pp. 2118-2124, 2011.
4 S.-G. Kang, S. Seo, B. Lee, and J.-Y. Joo, “Methodology for Determining of Generator Operation Point for Ensuring Voltage Stability Against Generator Faults in Jeju-Haenam HVDC System,” Journal of Electrical Engineering & Technology, vol. 5, pp. 54-60, (2010)   DOI
5 B. Lee, S.-G. Kang, S. Seo, V. Ajjarapu, and H. Song, “Generation re-dispatch algorithm against voltage collapse in Jeju island system with a frequency control by high-voltage direct current,” IET generation, transmission & distribution, vol. 4, pp. 609-619, 2010.   DOI
6 P. Kunder, Power System Stability and Control, McGraw-Hill, 1994.
7 “The 6th Basic Plan of Long-Term Electricity Supply and Demand,” Ministry of Knowledge Economy, Feb. 2013.
8 C. W. Taylor, Power System Voltage Stability, McGraw-Hill, 1994.
9 T. V. Cutsem and C. Vournas, Voltage Stability of Electric Power Systems, Kluwer Academic Publishers, 1998.
10 F. Dong, B. H. Chowdhury, M. L. Crow and Levent Acar, “Improving voltage stability by reactive power reserve management,” Power Systems, IEEE Transactions on, vol. 20, no. 1, pp. 338-345, Feb. 2005.   DOI
11 S. Singh and A. David, “Optimal location of FACTS devices for congestion management.” Electric Power Systems Research, vol. 58, no. 2, pp. 71-79. 2001.   DOI
12 S. Gerbex, R. Cherkaoui, A.J. Germond, “Optimal location of multi-type FACTS devices in a power system by means of genetic algorithms,” Power Systems, IEEE Transactions on, vol. 16, no. 3, pp. 537-544, Aug 2001.   DOI
13 A.R. Messina, M.A. Pérez and E. Hernández, “Coordinated application of FACTS devices to enhance steady-state voltage stability”, International Journal of Electrical Power & Energy Systems, vol. 25, no. 4, pp. 259-267, 2003.   DOI
14 R. S. Wibowo, N. Yorino, M. Eghbal, Y. Zoka and Y. Sasaki, “FACTS Devices Allocation With Control Coordination Considering Congestion Relief and Voltage Stability,” Power Systems, IEEE Transactions on , vol. 26, no. 4, pp. 2302-2310, 2011.   DOI
15 Dong-Hee Yoon, Hwachang Song, Gilsoo Jang, and Sung-Kwan Joo, “Smart Operation of HVDC Systems for Large Penetration of Wind Energy Resources,” Smart Grid, IEEE Transactions on, vol. 4, pp. 359-366, 2013.   DOI