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电网技术  2013 

改进型开关电感准Z源逆变器

, PP. 3254-3261

Keywords: 准Z源逆变器,升压能力,电压应力,电感电流脉动

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Abstract:

为克服传统Z源逆变器的不足,提出了一种改进型开关电感准Z源逆变器,用自举电容代替了传统开关电感中的一个二极管。与前人提出的拓扑相比,改进型拓扑不但提高了升压能力,保证了输出波形的质量,而且使电容及开关器件的电压应力得到了降低,同时也减小了电感电流的脉动。对改进型拓扑结构进行了理论分析,仿真及实验结果验证了该拓扑的可行性。

References

[1]  Peng F Z.Z-source inverter[J].IEEE Transactions on Industry Applications,2003,39(2):504-510.
[2]  Gajanayake C J,Vilathgamuwa D M,Poh C L,et al.Z-source-inverter-based flexible distributed generation system solution for grid power quality improvement[J].IEEE Transactions on Energy Conversion,2009,24(3):695-704.
[3]  彭方正,房绪鹏,顾斌,等.Z源变换器[J].电工技术学报,2004,19(2):47-51.Peng Fangzheng,Fang Xupeng,Gu Bin,et al.Z-source converter[J].Transactions of China Electrotechnical Society,2004,19(2):47-51(in Chinese).
[4]  贺昱曜,冯伟,宋石磊.Z源级联三电平中点钳位逆变器[J].电网技术,2012,36(4):219-224.He Yuyao,Feng Wei,Song Shilei.A cascaded Z-source three-level neutral point clamped inverter[J].Power System Technology,2012,36(4):219-224(in Chinese).
[5]  郑建勇,刘孝辉.Z源光伏并网逆变器无差拍解耦控制[J].电网技术,2012,36(3):252-256.Zheng Jianyong,Liu Xiaohui.Deadbeat decoupling control of Z-source grid-connected inverter[J].Power System Technology,2012,36(3):252-256(in Chinese).
[6]  张筱文,郑建勇,尤錾,等.适用于大功率场合的新型双Z 源电压源逆变器[J].电网技术,2011,35(2):25-31.Zhang Xiaowen,Zheng Jianyong,You Jun,et al.A novel double Z-source voltage source inverter suitable to high-power application scenarios[J].Power System Technology,2011,35(2):25-31(in Chinese).
[7]  王恒利,付立军,肖飞,等.三相逆变器不平衡负载条件下双环控制策略[J].电网技术,2013,37(2):398-404.Wang Hengli,Fu Lijun,Xiao Fei,et al.A double-loop control strategy for three-phase inverter with unbalanced load[J].Power System Technology,2013,37(2):398-404 (in Chinese).
[8]  侯朝勇,胡学浩,惠东.锂电池储能并网变换器的设计与实现[J].电网技术,2012,36(3):246-251.Hou Chaoyong,Hu Xuehao,Hui Dong.Design and implementation of grid-connected converter for lithium battery energy storage system[J].Power System Technology,2012,36(3):246-251(in Chinese).
[9]  周林,张林强,廖波,等.单相光伏逆变器控制技术研究[J].电网技术,2012,36(9):25-30.Zhou Lin,Zhang Linqiang,Liao Bo,et al.Research on control strategy of single-phase photovoltaic inverter[J].Power System Technology,2012,36(9):25-30 (in Chinese).
[10]  Tang Y,Xie S J,Zhang C H,et al.Improved Z-source inverter with reduced Z-source capacitor voltage stress and soft-start capability[J].IEEE Transactions on Power Electronics,2009,24(2):409-415.
[11]  Gajanayake C J,Lin L F,Hoay G,et al.Extended boost Z-source inverters[J].IEEE Transactions on Power Electronics,2010,25(10):2642-2652.
[12]  侯世英,黄哲,肖旭,等.改进型Z源并网逆变器[J].电机与控制学报,2012,16(12):47-53.Hou Shiying,Huang Zhe,Xiao Xu,et al.The improved Z source grid-connected inverter[J].Electric Machines and Control,2012,16(12):47-53 (in Chinese).
[13]  Anderson J,Peng F Z.Four quasi-Z-source inverters[C]//Power Electronics Specialists Conference.Rhodes,Greece: IEEE,2008:15-19.
[14]  Qian W,Peng F Z,Cha H Y.Trans-Z-source inverters[J].IEEE Transactions on Power Electronics,2011,26(12):3453-3463.
[15]  Axerlro B,Berkovich Y,Ioinovici A.Switched-capacitor/switched-inductor structures for getting transformerless hybrid DC-DC PWM converters[J].IEEE Transactions on Circuits and Systems I:Regular Papers,2008,55(2):687-696.
[16]  Abdel R O,Orabi M,Abdelmarim E,et al.Switched inductor boost converter for PV applications[C]//Applied Power Electronics Conference and Exposition (APEC).Orlando,Florida:2012 Twenty-Seventh Annual IEEE,2012:2100-2106.
[17]  汪东,赵一,石健将,等.具有开关电容的隔离型交错并联Boost变换器[J].中国电机工程学报,2009,29(21):14-20.Wang Dong,Zhao Yi,Shi Jianjiang,et al.Interleaved and isolated boost converters with switched capacitors[J].Proceedings of the Chinese Society for Electrical Engineering,2009,29(21):14-20 (in Chinese).
[18]  Zhu M,Yu K,Luo F L.Switched inductor Z-source inverter[J].IEEE Transactions on Power Electronics,2010,25(8):2150-2158.
[19]  Nguyen M K,Lim Y C,Cho G B.Switched-inductor quasi-Z-source inverter[J].IEEE Transactions on Power Electronics,2011,26(11):3183-3191.
[20]  刘孝辉,郑建勇,尤錾,等.开关电感型Quasi-Z源逆变器[J].电力自动化设备,2011,31(9):65-68,99.Liu Xiaohu,Zheng Jianyong,You Jun,et al.Switched-inductor quasi-Z source inverters[J].Electric Power Automation Equipment,2011,31(9):65-68,99 (in Chinese).
[21]  蔡春伟,曲延滨,盛况.增强型Z源逆变器[J].中国电机工程学报,2011,31(S1):259-266. Cai Chunwei,Qu Yanbin,Sheng Kuang.Enhanced Z-source inverters[J].Proceedings of the Chinese Society for Electrical Engineering,2011,31(S1):259-266(in Chinese).
[22]  杨水涛,丁新平,张帆,等.Z-源逆变器在光伏发电系统中的应用[J].中国电机工程学报,2008,28(17):112-118.Yang Shuitao,Ding Xinping,Zhang Fan,et al.Study on Z-source inverter for photovoltaic generation system[J].Proceedings of the Chinese Society for Electrical Engineering,2008,28(17):112-118 (in Chinese).
[23]  陈宗祥,蒋赢,潘俊民,等.基于滑模控制的Z源逆变器在单相光伏系统中的应用[J].中国电机工程学报,2008,28(21):33-39.Chen Zongxiang,Jiang Ying,Pan Junmin,et al.A Z-source inverter for a single-phase PV system based on sliding-mode control[J].Proceedings of the Chinese Society for Electrical Engineering,2008,28(21):33-39 (in Chinese).
[24]  许颇,张兴,张崇巍,等.采用Z源变换器的小型风力并网逆变系统[J].电工技术学报,2008,23(4):93-97.Xu Po,Zhang Xing,Zhang Chongwei,et al.Small wind turbine grid-connected systems based on Z-source inverter[J].Transactions of China Electrotechnical Society,2008,23(4):93-97 (in Chinese).
[25]  Peng F Z,Shen M S,Qian Z M.Maximum boost control of the Z-source inverter[J].IEEE Transactions on Power Electronics,2005,20(4):833-838.
[26]  Shen M S,Wang J,Joseph A,et al.Constant boost control of the Z-source inverter to minimize current ripple and voltage stress[J].IEEE Transactions on Industry Applications,2006,42(3):770-778.

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