Abstract:Because LCL filter needs smaller inductance value comparing to L type filter at the same performance in harmonic suppression, it is gradually used in high-power and low-frequency current-source-controlled grid-connected converters. However design work of LCL filter parameter not only relates to switch frequency ripple attenuation, but also impacts on performance of grid-connected current controller. First of all, this paper introduces a harmonic model of LCL filter in grid-connected operation, secondly researches the variable relationship among LCL filter’s parameter and resonance frequency and high-frequency ripple attenuation. In order to achieve optimal effect under the precondition of saving inductance magnetic core of LCL filter, a reasonable design method is brought out based on above analysis. Furthermore the method can guarantee that the resonance frequency of LCL filter is not too small to impact current controller design. Finally this design method is verified by the experimental results.
刘飞, 查晓明, 段善旭. 三相并网逆变器LCL滤波器的参数设计与研究[J]. 电工技术学报, 2010, 25(3): 110-116.
Liu Fei, Zha Xiaoming, Duan Shanxu. Design and Research on Parameter of LCL Filter in Three-Phase Grid-Connected Inverter. Transactions of China Electrotechnical Society, 2010, 25(3): 110-116.
[1] 张强, 刘建政, 李国杰. 单相光伏并网逆变器瞬时电流检测与补偿控制[J]. 电力系统自动化, 2007, 31(10): 50-54. [2] 董密, 罗安. 光伏并网发电系统中逆变器的设计与控制方法[J]. 电力系统自动化, 2006, 30(20): 97-102. [3] 王正仕, 陈辉明. 具有无功和谐波补偿功能的并网逆变器设计[J]. 电力系统自动化, 2007, 31(13): 67-71. [4] 张国荣, 张铁良, 丁明, 等. 具有光伏并网发电功能的统一电能质量调节器仿真[J]. 中国电机工程学报, 2007, 27(14): 82-86. [5] Liserre M, Blaabjerg F, Hansen S. Design and control of an LCL-filter based three-phase active rectifier[C]. Thirty-Sixth IAS Annual Meeting Conference Record of the 2001 IEEE, 2001, 1: 299-307. [6] 张宪平, 李亚西, 潘磊, 等. 三相电压型整流器的LCL型滤波器分析与设计[J]. 电气应用, 2007, 26(5): 65-67. [7] Teodorescu R, Blaabjerg F, Borup U, et al. A new control structure for grid-connected LCL PV inverters with zero steady-state error and selective harmonic compensation[C]. Applied Power Electronics Conference and Exposition, APEC’04, 19th Annual IEEE, 2004, 1: 580-581. [8] Twining E, Holmes D G. Grid current regulation of a three-phase voltage source inverter with an LCL input filter[J]. IEEE Trans. on Power Electronics, 2003, 18(5): 888-895. [9] Magueed F A, Svensson J. Control of VSC connected to the grid through LCL-filter to achieve balanced currents[C]. Fourtieth IAS Annual Meeting Con- ference Record, 2005, 1: 572-578. [10] Shen Guoqiao, Xu Dehong, Xi Danji, et al. An improved control strategy for grid-connected voltage source inverters with a LCL filter[C]. Applied Power Electronics Conference and Exposition, APEC’06, 21th Annual IEEE, 2006: 1067-1073. [11] Halimi B, Dahono P A. A current control method for phase-controlled rectifier that has an LCL filter[C]. Proceedings of 4th IEEE International Conference, 2001, 1: 20-25. [12] Serpa L A, Kolar J W, Ponnaluri S, et al. A modified direct power control strategy allowing the connection of three-phase inverter to the grid through LCL filters[C]. Fourtieth IAS Annual Meeting Conference Record, 2005, 1: 565-571. [13] Michael Lindgren, Jan Svensson. Control of a voltage-source converter connected to the grid through an LCL-filter-application to active filtering[C]. Power Electronics Specialists Conference, PESC’98, 29th Annual IEEE, 1998, 1: 229-235. [14] Magueed F A, Svensson J. Control of VSC connected to the grid through LCL-filter to achieve balanced currents[C]. Fourtieth IAS Annual Meeting Conference Record, 2005, 1: 572-578. [15] 武健, 何娜, 徐殿国. 三相并联有源滤波器输出滤波器设计方法研究[J]. 电力电子技术, 2004, 38(6): 16-19.