Yan Wei, etal, “Enhancement of Power System Stability Using Linear Optimal Control Strategy of UPFC”, Proceedings of the CSEE, Vol: 20, No:1, pp. 45-49, 2000.
Tan Weipu, etal, “Application of Digital Signal Processor on UPFC Experimentation Device”, Power System Technology, Vol: 23, No: 8, pp. 17-20, 1999.
Kalyan K. Sen, Albert J. F. Keri, “Comparison of Field Results and Digital Simulation Results of Voltage-Sourced Converter-Based FACTS Controllers”, IEEE Transactions on Power Delivery, Vol: 18, No:1, pp. 300-306, 2003.
K. K. Sen and E. J. Stacey, “UPFC—Unified Power Flow Controller: Theory, Modeling, And Applications”, IEEE Trans. Power Delivery, Vol: 13, No: 4, pp. 1453-1460, 1998.
K. R. Padiyar, A. M. Kulkarni, “Control Design and Simulation of Unified Power Flow Controller”, IEEE Transactions on Power Delivery, Vol: 13, No: 4, pp. 1348-1354, 1998.
Yan Wei, etal, “Enhancement of Power System Stability Using Linear Optimal Control Strategy of UPFC”, Proceedings of the CSEE, Vol: 20, No:1, pp. 45-49, 2000.
Tan Weipu, etal, “Application of Digital Signal Processor on UPFC Experimentation Device”, Power System Technology, Vol: 23, No: 8, pp. 17-20, 1999.
Kalyan K. Sen, Albert J. F. Keri, “Comparison of Field Results and Digital Simulation Results of Voltage-Sourced Converter-Based FACTS Controllers”, IEEE Transactions on Power Delivery, Vol: 18, No:1, pp. 300-306, 2003.
K. K. Sen and E. J. Stacey, “UPFC—Unified Power Flow Controller: Theory, Modeling, And Applications”, IEEE Trans. Power Delivery, Vol: 13, No: 4, pp. 1453-1460, 1998.
K. R. Padiyar, A. M. Kulkarni, “Control Design and Simulation of Unified Power Flow Controller”, IEEE Transactions on Power Delivery, Vol: 13, No: 4, pp. 1348-1354, 1998.
Tang, A., & Cheng, S. (2012). CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY. IU-Journal of Electrical & Electronics Engineering, 6(1), 91-95. https://izlik.org/JA98UC88FJ
AMA
1.Tang A, Cheng S. CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY. IU-Journal of Electrical & Electronics Engineering. 2012;6(1):91-95. https://izlik.org/JA98UC88FJ
Chicago
Tang, Aihong, and Shijie Cheng. 2012. “CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY”. IU-Journal of Electrical & Electronics Engineering 6 (1): 91-95. https://izlik.org/JA98UC88FJ.
EndNote
Tang A, Cheng S (January 1, 2012) CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY. IU-Journal of Electrical & Electronics Engineering 6 1 91–95.
IEEE
[1]A. Tang and S. Cheng, “CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY”, IU-Journal of Electrical & Electronics Engineering, vol. 6, no. 1, pp. 91–95, Jan. 2012, [Online]. Available: https://izlik.org/JA98UC88FJ
ISNAD
Tang, Aihong - Cheng, Shijie. “CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY”. IU-Journal of Electrical & Electronics Engineering 6/1 (January 1, 2012): 91-95. https://izlik.org/JA98UC88FJ.
JAMA
1.Tang A, Cheng S. CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY. IU-Journal of Electrical & Electronics Engineering. 2012;6:91–95.
MLA
Tang, Aihong, and Shijie Cheng. “CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY”. IU-Journal of Electrical & Electronics Engineering, vol. 6, no. 1, Jan. 2012, pp. 91-95, https://izlik.org/JA98UC88FJ.
Vancouver
1.Tang A, Cheng S. CONTROL ALGORITHM AND IMPLEMENTATION SCHEME OF UPFC IN LABORATORY. IU-Journal of Electrical & Electronics Engineering [Internet]. 2012 Jan. 1;6(1):91-5. Available from: https://izlik.org/JA98UC88FJ