參考文獻 |
[1] E. Habrouk, M. Darwish, “Active Power Filter:A Review,” IEEE Trans. on Power Electron., Vol. 147, Sept. 2000, pp. 403-413.
[2] Kakoli Bhattacharjee, “Harmonic Mitigation by SRF Theory Based Active Power Filter using Adaptive Hysteresis Control,” in Power and Energy System: Towards Sustainable Energy, Bangalore, India, 2014, pp. 1-6.
[3] Faiza Kaddari, Benyounes Mazari, Youcef Mihoub, Ahmed Safa, “Comparison of two compensation control strategies for shunt Active Power Filter,” in Renewable and Sustainable Energy Conference, Ouarzazate, Morocco, 2014, pp. 384-389.
[4] M. Suresh, S. S. Patnaik, Y. Suresh, A. K. Panda, “Comparison of two compensation control strategies for shunt active power filter in three-phase four-wire system,” in Innovative Smart Grid Technologies, Anaheim, CA, USA, 2011, pp. 1-6.
[5] A.Luna, C. Citro, C. Gavriluta, J. Hermoso, I. Candela, P. Rodriguez, “Advanced PLL structures for grid synchronization in distributed generation,” in Renewable Energies and Power Quality, Santiago de Compostela, 2012, pp. 1747-1756.
[6] Viktor Valouch, Petr Šimek, Jiří Škramlík, “New Three Phase PLL and FLL Techniques for Converters Used in Distributed Sources,” in Electric Power Engineering, Kouty nad Desnou, Czech Republic, 2015, pp. 94-99.
[7] Testing and measurement techniques – General guide on harmonics and interharmonics measurements and instrumentation, for power supply systems and equipment connected thereto. IEC Std. 61000-4-7, 2009.
[8] IEEE Standard Definition for the Measurement of Electric Power Quantities Under Sinusodial, Nonsinusoidal, Balanced, or Unbalanced Conditions. IEEE Std. 1459-2010.
[9] IEEE Recommended Practices and Requirements for Harmonic Control in Electrical Power Systems, IEEE Std. 519-2014.
[10] 黃明陽,「應用停限電運轉圖資系統支援配電饋線三相不平衡分析與改善」,國立中山大學電機工程學系博士論文,中華民國九十七年。
[11] Z. Wang, Q. Wang, W. Yao, and J. Liu, “A series active power filter adopting hybrid control approach,” IEEE Trans. on Power Electron., Vol. 16, No. 3, pp. 301-310, May, 2001.
[12] S. Bhattacharya and D. Divan, “Synchronous frame based controller implementation for a hybrid series active filter system,” in Proc. 1995 IEEE/IAS Annual Meeting, 1995, pp. 2531-2540.
[13] C. N. Bhende, S. Mishra, and S. K. Jain, “TS-Fuzzy-Controlled Active Power Filter for Load Compensation,” IEEE Trans. on Power Delivery, Vol. 21, No. 3, pp. 1495-1465, June, 2006.
[14] 林柏宏,「應用適應性控制於主動式電力濾波器之研究」,國立成功大學電機工程學系碩士論文,中華民國九十一年。
[15] 王國龍,「主動式電力品質之研究與分析」,國立雲林科技大學電機工程學系碩士論文,中華民國九十六年。
[16] 楊銘基,「高性能並聯式主動電力濾波器系統設計與實現」,國立中央大學電機工程學系博士論文,中華民國九十八年。
[17] H. Fujita and H. Akagi, “A practical approach to harmonic compensation in power systems – series connection of passive and active filter,” IEEE Trans. on Ind. App., Vol. 27, No. 6, pp. 1020-1025, Nov./Dec. 1991.
[18] F. Z. Peng, H. Akagi, and A. Nabae, “ A new approach to harmonic compensation in power systems – a combined system of shunt passive and series active filter,” IEEE Trans. on Ind. Appl., Vol. 26, No. 6, pp. 983-990, Nov./Dec. 1990.
[19] G.-M. Lee, D.-C. Lee, and J.-K. Seok, “Control of series active power filters compensating for source Voltage unbalance and current harmonic,” IEEE Trans. Ind. Electron., Vol. 51, No. 1, pp. 132-139, Feb. 2004.
[20] 許陳霖,「以自適應性線性濾波器與頻率檢測法為基礎之並聯主動式電力濾波器設計」,國立中央大學電機工程學系碩士論文,中華民國一百零五年。
[21] 陳俊瑋,「並聯主動式電力濾波器之設計與研製」,中原大學電機工程學系碩士論文,中華民國九十四年。
[22] V. D. Bacon, S. A. O. D. Silva, L. B. G. Campanhol, and B. A. Angelico, “Stability analysis and performance evaluation of a single-phase phase-locked loop algorithm using a non-autonomous adaptive filter,” IET Power Electron., Vol. 7, No. 8, pp. 2081-2092, Aug, 2014,.
[23] Jiaqi Yu, Yong Xu, Yijia Cao, Jingrong Yu, “An Improved Dual Second-order Generalized Integrator PLL under Non-ideal Grid Conditions,” in Chinese Control Conference, Chengdu, China, 2016, pp. 8644-8648.
[24] G. Wang, L. Ding, Z. Li, J. Xu, G. Zhang, H. Zhan, R. Ni, and D. Xu, “Enhanced Position Observer Using Second-Order Generalized Integrator for Sensorless Interior Permanent Magnet Synchronous Motor Drives,” IEEE Trans. on Energy Conversion, Vol. 29, No. 2, pp. 486-495, June, 2014.
[25] M. Aredes, J. Hanfner, K. Heumann, “Three-phase four-wire shunt active filter control strategies,” IEEE Trans. on Power Electron, Vol. 12, Mar. 1997, pp. 311-318.
[26] J. Afonso, C. Couto, J. Martins, “Active filters with control based on the theory,” IEEE Ind. Electron. Soc. Newlett., Sep. 2000, pp. 5-11.
[27] Bhim Singh, Vishal Verma, “Selective Compensation of Power - Quality Problem Through Active Power Filter by Current Decomposition,” IEEE Trans. on Power Delivery, Vol. 23, No.2, pp. 792-799, April, 2008.
[28] Wei Lu, Changbo Xu, Chunwen Li, “Selective Compensation of Power Quality Problems with a Three-Phase Four-Leg Shunt Active Filter, in Intelligent Control and Automation, Taipei, Taiwan, 2011, pp. 166-171.
[29] Jacques L Wilems, “The IEEE Standard 1459: What and Why?” in Applied Measurements For Power Systems, Aachen, Germany, 2010, pp.41-46.
[30] AbellÁn-GarcÍa, Miguel Alcaniz, Rafael Masot-Peris, “Selective Shunt Active Power Compensator Applied in Four-Wire Electrical Systems Based on IEEE Std. 1459,” IEEE Trans. on Power Delivery, Vol. 23, No.4, pp. 2563-2574, October, 2008.
[31] José Carlos Alfonso-Gil, Emilio Pérez, C. Ariño, Hector Beltran, “Optimization Algorithm for Selective Compensation in a Shunt Active Power Filter,” IEEE Trans. on Industrial Electronics, Vol. 62, No. 6, pp. 3351-3361, June, 2015.
[32] 鈦思科技股份有限公司,「視覺化建模環境Simulink入門與進階」, 鈦思科技股份有限公司,2001年。
[33] J. G. Pinto, R. Pregitzer, Luís F. C. Monteiro, and João L. Afonso, “3-Phase 4-Wire Shunt Active Power Filter with Renewable Energy Interface,” International Conference on Renewable Energies and Power Quality, Seville, Spain, Mar, 2007.
[34] W. Xu, H. W. Dommel, M. B. Hughes, G. W. Chang, and L. Tan, “Modelling of adjustable speed drives for power system harmonic analysis,” IEEE Trans. on Power Delivery, Vol. 14, No. 2, pp. 595-601, April, 1999.
[35] T. Tayjasanant, W. Wang, C. Li, and W. Xu, “Interharmonic-Flicker Curves,” IEEE Trans. on Power Delivery, Vol. 20, No. 2, pp, 1017-1024, April, 2005.
[36] 李泓希,「獨立系統頻控效能指標計算之頻率誤差控制目標研擬」,國立中山大學電機工程學系碩士論文,中華民國九十九年。
[37] 台灣電力公司,「電力系統運轉操作章則彙編」,第十一次修訂,中華民國九十六年。 |