參考文獻
[1] X. Lei, E. N. Lerch, and D. Povh, “Optimization and coordination of damping controls for improving system dynamic performance,” IEEE Trans. Power Delivery, vol. 16, no. 3, August 2001, pp. 473-480.
[2] X. R. Chen, N. C. Pahalawaththa, U. D. Annakkage, and C. S. Kumble, “Output feedback TCSC controllers to improve damping of meshed multi-machine power systems,” IEE Proceedings, Generation Transmission and Distribution, vol. 144, no. 3, May 1997, pp. 243-248.
[3] R. J. Dávalos and J. M. Ramírez, “A review of a quasi-static and a dynamic TCSC model,” IEEE Power Engineering Review, vol. 20, no. 11, November 2000, pp. 63-65.
[4] Y. L. Tan and Y. Wang, “Effects of FACTS controller line compensation on power system stability,” IEEE Power Engineering Review, vol. 18, no. 7, July 1998, pp. 55-56.
[5] M. Sultan, J. Reeve, and R. Adapa, “Combined transient and dynamic analysis of HVDC and FACTS systems,” IEEE Trans. Energy Conversion, vol. 13, no. 4, October 1998, pp. 1271-1277.
[6] X. Zhou and J. Liang, “Overview of control schemes for TCSC to enhance the stability of power systems,” IEE Proceedings, Generation Transmission and Distribution, vol. 146, no. 2, March 1999, pp. 125-130.
[7] S. S. Murthy, C. S. Jha, and P. S. Nagendra Rao, “Analysis of grid connected induction generators driven by hydro/wind turbines under realistic system constraints,” IEEE Trans. Energy Conversion, vol. 5, no. 1, March 1990, pp. 1-7.
[8] S. D. Rubira and M. D. McCulloch, “Control method comparison of double fed wind generators connected to the grid by asymmetric transmission lines,” IEEE Trans. Industry Applications, vol. 36, no. 4, July/August 2000, pp. 986-991.
[9] J. B. Patton and D. Curtice, “Analysis of utility protection problems associated with small wind turbine interconnections,” IEEE Trans. Power Apparatus and Systems, vol. 101, no. 10, 1982, pp. 3957-3966.
[10] D. B. Watson, J. Amlaga, and T. Densem, “Controllable d.c. power supply from wind-driven self-excited induction machines,” IEE Proceedings, vol. 126, no. 12, 1979, pp. 1245-1248.
[11] R. Ramakumar, “Renewable energy sources and developing countries,” IEEE Trans. Power Apparatus and systems, vol. 102, no. 2, 1983, pp. 502-510.
[12] P. C. Krause, Analysis of Electric Machinery, New York: McGraw-Hill Book Company, 1993.
[13] N. G. Hingorani and L. Gyugyi, Understanding FACTS: Concepts and Technology of Flexible AC Transmission Systems, New York: IEEE Press, 2000.
[14] B. R. Barkovich and D. V. Hawk, “Charting a new course in California,” IEEE SPECTRUM, July 1996.
[15] EPRI, “Study of system operating impacts of FACTS technologies,” GE, ECC Inc., Carson Taylor Seminars, Final Report on EPRI RP 3022-25, Oct. 1993.
[16] FACTS Application Task Force, FACTS Applications, IEEE Power Engineering Society, 1996, pp. 1.1–4.9.
[17] D. J. Gotham and G. T. Heydt, “Power flow control and power flow studies for systems with FACTS devices,” IEEE Trans. Power Systems, vol. 13, no. 1, Feb. 1998.
[18] K. Ghosh and V. C. Ramesh, “An option model for electric power markets,” Electrical Power and Energy Systems, vol. 19, no. 2, 1997.
[19] S. D. Rubira and M. D. McCulloch, “Control method comparison of double fed wind generators connected to the grid by asymmetric transmission lines,” IEEE Trans. Industry Applications, vol. 36, no. 4, July/August 2000, pp. 986-991.
[20] M. A. Redferm, O. Usta, and G. Fielding, “Protection against loss of utility grid supply for a dispersed storage and generating unit,” IEEE Trans. Power Delivery, vol. 8, no. 3, July 1993, pp. 948-954.
[21] E. L. Owen and G. R. Griffith, “Induction generators for Petroleum and chemical plants,” IEEE Trans. Industry Applications, vol. 19, no. 6, November/December 1983, pp. 1003-1013.
[22] J. R. Parsons, Jr., “Cogeneration application of induction generators,” IEEE Trans. Industry Applications, vol. 20, no. 3, May/June 1984, pp. 497-503.
[23] A. H. Ghorashi, S. S. Murthy, B. P. Singh, and B. Singh, “Analysis of wind driven grid connected induction generators under unbalanced grid conditions,” IEEE Trans. Energy Conversion, vol. 9, no. 2, June 1994, pp. 217-223.
[24] A. K. Tandon, S. S. Murthy, and G. J. Berg, “Steady-state analysis of capacitor self-excited induction generators,” IEEE Trans. Power Apparatus and Systems, vol. 103, 1984, pp. 612-618.
[25] H. A. Breedlove and J. R. Harbaugh, “Protection of the induction motor/generator,” IEEE Trans. Industry Applications, vol. 19, no. 6, November/December 1983, pp. 958-961.
[26] L. J. Powell, “An industrial view of utility cogeneration protection requirements,” IEEE Trans. Industry Applications, vol. 24, no. 1, January/February 1988, pp. 75-81.
[27] S. K. Jain, J. D. Sharma, and S. P. Singh, “Transient performance of three-phase self-excited induction generator during balanced and unbalanced faults,” IEE Proceedings, Generation Transmission and Distribution, vol. 149, no. 1, January 2002, pp. 50-57.
[28] K. E. Yeager and J. R. Willis, “Modeling of Emergency Diesel Generators in An 800 Megawatt Nuclear Power Plant,” IEEE Trans. Energy Conversion, Vol. 8, No. 3, September 1993, pp. 433-441.
[29] O. J. M. Smith, “Three-phase induction generator for single phase line,” IEEE Trans. Energy Conversion, vol. 2, no. 3, September 1987, pp. 382-387.
[30] E. N. Hinrichsen and P. J. Nolan, “Dynamics and stability of wind turbine generators,” IEEE Trans. Power Apparatus and Systems, vol. 101, no. 8, August 1982, pp. 2640-2648.
[31] C.L. Kana, M. Thamodharan, and A. Wolf, “System Mnagement of a wind-energy converter,” IEEE Trans. Power Electronics, vol. 16, no. 3, 2001, pp. 375-381.
[32] 曹慶忠,市電並聯型感應發電機之分析,國立成功大學,電機工程研究所,八十八學年度碩士論文,89年6月。[33] 王京明、錢玉蘭、李鈞元,再生能源發電效益經濟評估,中華經濟研究院,86年5月,第97頁。
[34] 郭松村,獨立自激式感應發電機之負載特性分析,國立成功大學,電機工程研究所,九十學年度博士論文。[35] 陳曦照,電業自由化環境下競價為基礎之電力調度及發電業競標策略之研究,國立中山大學,電機工程學系研究所,八十九學年度博士論文。