The Review of Grid-Connected PV System’s Transient Voltage Stability

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Abstract:

Grid photovoltaic system’s inverter, grid device and other power electronics device consume a large quantity of reactive power, the distribution system load mostly is perceptual, it must also consume reactive power. This will make big interference interconnection of photovoltaic system after the transient voltage stability serious test. Therefore, the study grid photovoltaic system transient voltage stability is of great significance. This paper introduces the transient voltage stability of research contents, such as transient voltage stability of factors, stability criterion, the simulation calculation, and puts forward prevention transient voltage instability accident measures, and analyzes system transient voltage stability mechanism.

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681-684

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June 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Photovoltaic (pv) grid system overview, Che Xiaoxuan, wuhan university press, 2006. 10.

Google Scholar

[2] Grid type solar power systems, Cui Rongqiang, Zhao Chunjian, Wu Dacheng, Beijing: chemical industry press, 2007. 7.

Google Scholar

[3] Power system foundation, Wu Junyong, Xu Lijie, Chen Li, Lang Bing, tsinghua university press, Beijing jiaotong university press, (2008).

Google Scholar

[4] Power system transient process, Chang Xianrong, Zhao Shu qiang, mechanical industry press, (2010).

Google Scholar

[5] Ma Shiying, Tong Yong etc, Short-term and long-term voltage stability simulation and evaluation [J], the grid technology, 2006, 30 (19) : 14-20.

Google Scholar

[6] Duan Xianzhong, He Yangzan, Chen Deshu. Power system transient voltage stability of the basic concepts and simulation analysis [J]. journal of huazhong university of science and technology journal, 1995, 23 (4) : 21-24.

Google Scholar

[7] Sun Huadong, Zhou Xiaoxin, Li Remei, induction motor load parameters on power system transient voltage stability, the influence of network technology, 2005. 12.

Google Scholar

[8] Sekine Y, Ohtsuki H.Cascaded voltage collapse[J].IEEE Transactions on Power Systems,1990,5(1):250-256.

Google Scholar

[9] Duan Xianzhong, He Yangzan, Chen Deshu. Simulation of transient voltage stability judgment [J]. journal of huazhong university of science and technology journal, 1995, 23 (4) : 25-28.

Google Scholar

[10] Xue Y,Xu T,Liu B,et al.Quantitative assessments for transient voltage security[J].IEEE Transactions on Power Delivery,2000,15(3):1077-1083.

Google Scholar

[11] Tang Yong, Yi Jun, Sun Huadong, Lin Weifang, Zhang Xin, Shao Yao, Based on power current changes relationship voltage instability discriminant method [J]. journal of Chinese electrical engineering journal, 2010(28).

Google Scholar

[12] Zhou Shuangxi, Wu Wei, Wu Junling, etc. energy storage device is used for improving the superconducting transient voltage stability study [J] grid technology, 2004. 28.

Google Scholar

[13] Huang Xiaohua, Ye Yin, Zhang Zhifeng, Xiao Liye, SMES controller. improve the power system transient voltage stability, (2008).

Google Scholar

[14] Zheng Guangjun, Wang Wei, foreign two typical low pressure reducing load scheme research, electrical equipment 2008. 11.

Google Scholar

[15] Lin Jikeng, Li Yangchun, Luo Pingping, Ye Jianhua, Zheng Weihong, Wang Hailin, waveform relaxation method of power system transient stability concurrent simulation calculation, electrical technology journal, 2006. 12.

Google Scholar

[16] Li Sheng, Wang Xun, based on the MATLAB power system transient voltage stability simulation studies, nanjing engineering college journal, 2007. 6.

Google Scholar

[17] IEEE Task Force.Standard load models for power flow and dynamic performance simulation[J].IEEE Trans on Power Systems 1995,10(3):1302-1312.

Google Scholar

[18] IEEE/GIGRE Joint Task Force on Stability Terms and Definitions and classification of power system stability [J].IEEE Trans on Power Systems,2004,19(3):1387-1401.

DOI: 10.1109/tpwrs.2004.825981

Google Scholar