A Simulation System of Wind Turbine Based on Labwindows

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Wind energy is the worlds fastest growing renewable energy source in recent years, and it has drawn worldwide attention. Due to high efficiency, simple topology and stable operation, variable speed constant frequency (VSCF) direct-drive wind power generation system using permanent magnet synchronous generator (PMSG) is the development trend and one of the focuses of wind power generation system research. The paper introduces the trend of the development wind power generation and the recently research stage on the wind power generation. Based on the VSCF power fundamental principle, the dissertation analyzes the strategy of wind turbine simulation. In the development of wind power generating system, the wind turbine emulator becomes more and more important because it can provide controllable wind turbine characteristics. Simplified mathematical model based on the CT-λ curve is constructed, the system structure and emulation method are analyzing. Hardware and software are designed and implemented, and a laboratory set-up is building which based on DC motor. Experimental results show that the wind turbine emulator is as good as expected.

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943-951

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yang Yingzhong. Power shortage" has set off alarm bells in China, s economic development. Journal of Chongqing Vocational and Technical College, 2004, 13(2): 81~81.

Google Scholar

[2] Xu Weihui, Sun Guangping. Try to explain the 2003 summer power shortage, phenomenon from the perspective of economic. Northeast China Water Conservancy and hydropower, 2004, 22 (234): 4~6.

Google Scholar

[3] Li junfeng, gao hu. 2007china wind power report. china environmental and science press. 2008: 37~39.

Google Scholar

[4] Guo Quanying. China Wind Power Cost Study. Master's thesis of Shenyang University of Technology, 2002: 5~7.

Google Scholar

[5] Liu Yandong. The status of wind power and Countermeasures. Inner Mongolia petrochemical, 2001(5): 74~75.

Google Scholar

[6] Zhang Fangjun. Wind power technology and its development direction. Electric Age, 2005, (11): 22~24.

Google Scholar

[7] Chen Lei, Xing Zuoxia, Pan Jian, Zhong Mingfang. The develop trend of wind power generation technology of large wind turbine. Renewable energy, 2003,(1): 27~30.

Google Scholar

[8] Yao Xingjia, Liu Guangde, Xing Zuoxia. Discussion on several problems for the design of large-scale variable speed wind turbine. Journal of Shenyang University of Technology, 2006, 28(2): 186~200.

DOI: 10.1109/icma.2009.5246272

Google Scholar

[9] L. H. Hansen, P. H. Madsen, F. Blaabjerg,etc. Generators and Power Electronics Technology for Wind Turbines. IEEE, 2001: 2000~(2005).

Google Scholar

[10] H. Polinder, F. A. Van Der Pijl,De Vilder. Comparison of Direct-Drive and Geared Generator Concepts for Wind Turbines. IEEE, 2006: 725~732.

DOI: 10.1109/tec.2006.875476

Google Scholar

[11] Ma Hongfei, Xu Dianguo, Miao Lijie. Several VSCF wind power system control scheme comparative analysis. Electrical Technology Magazine, 2000, (10): 1~4.

Google Scholar

[12] P. Mutschler, R. Hoffmann. Comparisons of Wind Turbines Regarding their Energy Generation. Proceedings of IEEE PESC Conference,2002, (1): 23~27.

Google Scholar

[13] P. Henk, D. Haan, W. H. Sjoerd. Basic Operation Principles and Electrical Conversion Systems of Wind Turbines. EPE Journal, 2005, 15(4): 43~50.

DOI: 10.1080/09398368.2005.11463604

Google Scholar

[14] Ma Xiaoliang. Variable speed wind turbine drive systems program comparison. The World of Inverters, 2007, (4): 42~48.

Google Scholar

[15] Heng Yi, Wang Zhizhong. Comparative analysis of wind turbines and their control system. Small and medium-sized motor, 2002, 29(4): 41~45.

Google Scholar

[16] K. C. Kim, S. B. Lim,K. Jang. Analysis on the Direct-Driven High Power Permanent Magnet Generator for Wind Turbine. IEEE, 2005: 243~247.

Google Scholar

[17] F. X. Wang, Q. M. Hou. Study on Control System of Low Speed PM Generator Direct Driven by Wind Turbine. IEEE, 2005: 1009~1012.

DOI: 10.1109/icems.2005.202697

Google Scholar

[18] Zhang Xing, Zhang Chongwei. Research on voltage vector control technology of PWM reversible converter space. Chinese Journal of Mechanical Engineering, 2001, 21(10): 102~109.

Google Scholar

[19] J. W. Dixon, B. T. Ooi. Indirect Current Control of a Unity Power Factor Sinusoidal Current Boost Type Three-phase Rectifier. IEEE Trans. On Power Electronics, 1988, 35(4): 508~515.

DOI: 10.1109/41.9172

Google Scholar

[20] Yang Degang, Liu Runsheng, Zhao Liangbing. Current controller design of a three phase high power factor rectifier. Journal of Electrician Technique, 2000(2): 83~87.

Google Scholar

[21] Zhang Xing. Research on PWM rectifier and its control strategy. Doctoral Dissertation of HeFei University of Technology, 2003: 3~6.

Google Scholar

[22] Huang Shoudao, Zhang Tiejun, Chen Ying. Research on a three-phase PWM rectifier control method. Electrical applications, 2005, 24(3): 106~10.

Google Scholar

[23] Lang Yongqiang, Xu Dianguo, S. R. HADIANAMREI, Ma Hongfei. Improved feedforward control of three-phase voltage source PWM rectifier. Electric Machines and Control.

DOI: 10.1109/pesc.2005.1581641

Google Scholar

[1] 2006, 10(2): 160~163.

Google Scholar