參考文獻 |
[1] Global Market Outlook for Photovoltaics 2013-2017, 2013, [Online]. Available: http://www.epia.org/home/
[2] 經濟部能源局,2012年能源產業技術白皮書,經濟部能源局,台北市,2012。
[3] F. Blaabjerg, R. Teodorescu, M. Liserre, and A. V. Timbus, “Overview of control and grid synchronization for distributed power generation systems,” IEEE Trans. Indust. Electron., vol. 53, no. 5, pp. 1398-1409, Oct. 2006.
[4] M. H. J. Bollen, “Characterisation of voltage sags experienced by three-phase adjustable-speed drives,” IEEE Trans. Power Del., vol. 12, no. 4, pp. 1666-1671, Oct. 1997.
[5] V. Ignatova, P. Granjon, and S. Bacha, “Space vector method for voltage dips and swells analysis,” IEEE Trans. Power Del., vol. 24, no. 4, pp. 2054-2061, Oct. 2009.
[6] Grid Code High and Extra High Voltage, E.ON Netz GmbH, Bayreuth, Germany, Apr. 2006. [Online]. Available: http://www.nationalgrid.com/uk
[7] P. Rodriguez, A. V. Timbus, R. Teodorescu, M. Liserre, and F. Blaabjerg, “Flexible active power control of distributed power generation systems during grid faults,” IEEE Trans. Indus. Electron., vol. 54, no. 5, pp. 2583-2592, Oct. 2007.
[8] P. Rodríguez, A. Timbus, R. Teodorescu, M. Liserre, and F. Blaabjerg, “Reactive power control for improving wind turbine system behavior under grid faults,” IEEE Trans. Power Electron., vol. 24, no. 7, pp. 1798-1801, Jul. 2009.
[9] M. Castilla, J. Miret, J. L. Sosa, J. Matas, and L. García de Vicuña, “Grid-fault control scheme for three-phase photovoltaic inverters with adjustable power quality characteristics,” IEEE Trans. Power Electron., vol. 25, no. 12, pp. 2930-2940, Dec. 2010.
[10] M. Reyes, P. Rodriguez, S. Vazquez, A. Luna, R. Teodorescu, and J. M. Carrasco, “Enhanced decoupled double synchronous reference frame current controller for unbalanced grid-voltage conditions,” IEEE Trans. Power Electron., vol. 27, no. 9, pp. 3934-3943, Sep. 2012.
[11] C. T. Lee, C. W. Hsu, and P. T. Cheng, “A low-voltage ride-through technique for grid-connected converters of distributed energy resources,” IEEE Trans. Indus. Appl., vol. 47, no. 4, pp. 1821-1832, Jul./Aug. 2011.
[12] J. Miret, M. Castilla, A. Camacho, L. García de Vicuña, and J. Matas, “Control scheme for photovoltaic three-phase inverters to minimize peak currents during unbalanced grid-voltage sags,” IEEE Trans. Power Electron., vol. 27, no. 10, pp. 4262-4271, Oct. 2012.
[13] A. Camacho, M. Castilla, J. Miret, J. C. Vasquez, and E. Alarcón-Gallo, “Flexible voltage support control for three-phase distributed generation inverters under grid fault,” IEEE Trans. Power Electron., vol. 60, no. 4, pp. 1429-1441, Apr. 2013.
[14] J. Miret, A. Camacho, M. Castilla, L. García de Vicuña, and J. Matas, “Control scheme with voltage support capability for distributed generation inverters under voltage sags,” IEEE Trans. Power Electron., vol. 28, no. 11, pp. 5252-5262, Nov. 2013.
[15] D. Xie, Z. Xu, L. Yang, J. Østergaard, Y. Xue, and K. P. Wong, “A comprehensive LVRT control strategy for DFIG wind turbines with enhanced reactive power support,” IEEE Trans. Power Sys., to be published, 2013.
[16] F. J. Lin, L. T. Teng, P. H. Shieh, and Y. F. Li, “Intelligent controlled-wind-turbine emulator and induction-generator system using RBFN,” IET Electr. Power Appl., vol. 153, no. 4, pp. 608-618, Jul. 2006.
[17] F. J. Lin, M. S. Huang, P. Y. Yeh, H. C. Tsai, and C. H. Kuan, “DSP-based probabilistic fuzzy neural network control for Li-ion battery charger,” IEEE Trans. Power Electron., vol. 27, no. 8, pp. 3782-3794, Aug. 2012.
[18] W. M. Lin and C. M. Hong, “A new Elman neural network-based control algorithm for adjustable-pitch variable-speed wind-energy conversion systems,” IEEE Trans. Power Electron., vol. 26, no. 2, pp. 473-481, Feb. 2011.
[19] I. B. Kucukdemiral and G. Cansever, “Formalization of a noval Sugeno type adaptive fuzzy sliding mode controller for a class of nonlinear systems,” in Proc. IEEE International Conference Mechatronics, pp. 717-720, 2005
[20] Z. L. Gaing, “Wavelet-based neural network for power disturbance recognition and classification,” IEEE Trans. Power Del., vol. 19, no. 4, pp. 1560-1568, Oct. 2004.
[21] N. M. Pindoriya, S. N. Singh, and S. K. Singh, “An adaptive wavelet neural network-based energy price forecasting in electricity markets,” IEEE Trans. Power Sys., vol. 23, no. 3, pp. 1423-1432, Aug. 2008.
[22] C. H. Lu, “Wavelet fuzzy neural networks for identification and predictive control of dynamic systems,” IEEE Trans. Indus. Electron., vol. 58, no. 7, pp. 3046-3058, Jul. 2011.
[23] M. Davanipoor, M. Zekri, and F. Sheikholeslam, “Fuzzy wavelet neural network with an accelerated hybrid learning algorithm," IEEE Trans. Fuzzy Sys., vol. 20, no. 3, pp. 463-470, Jun. 2012.
[24] Z. Liu and H. X. Li, “A probabilistic fuzzy logic system for modeling and control,” IEEE Trans. Fuzzy Sys., vol. 13, no. 6, pp. 848-859, Dec. 2005.
[25] H. X. Li and Z. Liu, “A probabilistic neural-fuzzy learning system for stochastic modeling,” IEEE Trans. Fuzzy Sys., vol. 16, no. 4, pp. 898-908, Aug. 2008.
[26] N. Sozhamadevi, R. S. L. Delcause, and Dr. S. Sathiyamoorthy, “Design and implementation of probabilistic fuzzy logic control system,” in Proc. IEEE Conf. Emerging Trends in Science, Engineering and Technology, pp. 523-531, 2012.
[27] H. Y. Pan, C. H. Lee, F. K. Chang, and S. K. Chang, “Construction of asymmetric type 2 fuzzy membership function and application in time series prediction,” in Proc. Int. Conf. Machine Learning and Cybernetics, pp. 2024-2030, 2007.
[28] K. H. Cheng, C. F. Hsu, C. M. Lin, T. T. Lee, and C. Li, “Fuzzy neural sliding mode control for dc-dc converters using asymmetric gaussian membership functions,” IEEE Trans. Indust. Electron., vol. 54, no. 3, pp. 1528-1536, 2007
[29] C. H. Lee, T. W. Hu, C. T. Lee, and Y. C. Lee, “A recurrent interval type-2 fuzzy neural network with asymmetric membership functions for nonlinear system identification,” in Proc. IEEE Conf. Fuzzy System, pp. 1496-1502, 2008.
[30] K. Ishaque, Z Salam, M Amjad, and S Mekhulef, “An Improved Particle Swarm Optimization (PSO)–Based MPPT for PV With Reduced Steady-State Oscillation,” IEEE Trans. Power Electron., vol. 27, no. 8, pp. 3627-3638, Aug. 2012.
[31] Y. H. Yang and F. Blaabjerg, “A modified P&O MPPT algorithm for single phase PV systems based on deadbeat control,” in Proc. 6th IET Inter. Conf. Power Electronics, Machines and Drives, Mar. 2012.
[32] 黃仲欽,交流電動機控制,交流電動機課程講義,民國97年。
[33] N. Mohan, T. M. Undeland, W. P. Robbins, Power electronics, 1989.
[34] 使用手冊,可程控直流電源供應器(具太陽能電池陣列模擬) 62000H系列使用手冊,Chroma,2012。
[35] 使用手冊,太陽能電池陣列模擬虛擬儀控面板 62000H系列使用手冊,Chroma,2012年三月。
[36] 呂宗翰,智慧型控制雙饋式感應風力發電系統之研製,國立中央大學,碩士論文,2010年六月。
[37] H. Saadat, Power System Analysis, McGraw-Hill, 2004.
[38] User Manual, User’s Manual PCR-LE series, KIKUSUI, Feb. 2013.
[39] G. Saccomando, J. Svensson, and A. Sannino, “Improving voltage disturbance rejection for variable-speed wind turbines,” IEEE Trans. Energy Convers., vol. 17, no. 3, pp. 422-428, Sep. 2002.
[40] R. Teodorescu, M. Liserre, and P. Rodriguez, Grid converters for photovoltaic and wind power systems. John Wiley & Sons. Ltd. 2011. |