An improved modular SVG parallel interleaving modulation method

被引:0
|
作者
Wu J. [1 ]
Zhang G. [1 ]
Ai Y. [1 ]
Jiang Z. [1 ]
Liu Z. [2 ]
机构
[1] College of Electrical Engineering and Automation, Henan University of Technology, Jiaozuo
[2] Zhoukou Power Supply Company, Zhoukou
来源
Dianli Xitong Baohu yu Kongzhi/Power System Protection and Control | 2019年 / 47卷 / 08期
基金
中国国家自然科学基金;
关键词
Current ripple; Interleaving parallel; SVG; Switching frequency; THD;
D O I
10.7667/PSPC180510
中图分类号
学科分类号
摘要
An improved modular SVG parallel interleaving modulation method is proposed to solve the problem of large current Total Harmonic Distortion (THD) when interleaving parallel modulation of modular SVG system. Firstly, the current ripple of the interleaving parallel system is analyzed according to the structure of the interleaving parallel circuit, and the calculation formula of the maximum current ripple output of the interleaving parallel system is derived. Secondly, the improved interleaving parallel modulation method is compared with the traditional interleaving parallel method, and the improved method is superior to the traditional method in many aspects such as suppressing ripple, etc. Finally, the method proposed is verified by Matlab/Simulink simulation experiments to check the feasibility and effectiveness of the improved modular SVG parallel interleaving modulation. The results show that this interleaving parallel mode is very effective at lower switching frequencies, and it can be used in the field of low frequency and low current interleaving parallel systems. © 2019, Power System Protection and Control Press. All right reserved.
引用
收藏
页码:26 / 33
页数:7
相关论文
共 24 条
  • [1] Lou X., Zheng H., Chang X., Control strategy study on MMC active power filter, Power Capacitor & Reactive Power Compensation, 38, 1, pp. 35-39, (2017)
  • [2] Yu P., Zhang Y., Sun H., Et al., Optimum design on the new pattern AC-DC mixed modular microgrid topology, Power System Protection and Control, 45, 9, pp. 26-34, (2017)
  • [3] Xu S., Fei S., Zhao J., Et al., Analysis and control of high-frequency harmonic circular currents in multi-module APF parallel system, Transactions of China Electrotechnical Society, 31, 5, pp. 60-68, (2016)
  • [4] Wei L., Liu S., You W., Et al., A novel interleaved boost converter with non-resonant soft-switching, Transactions of China Electrotechnical Society, 32, 3, pp. 172-183, (2017)
  • [5] Gao C., Guo Q., Zhou Q., Et al., The security and stability problems of large-scale outbound power transmission of renewable energy in the 13th five-year power plan, Electric Power, 50, 1, pp. 37-42, (2017)
  • [6] Jia D., Wu S., A review of China's power supply and demand in 2016 and a prediction in 2017, Electric Power, 50, 6, pp. 1-5, (2017)
  • [7] Xiong Y., Zhao C., Xu J., A review of ranking algorithms for MMC capacitor voltages balancing, Electric Power Engineering Technology, 36, 2, pp. 1-8, (2017)
  • [8] Chen G., Jiang S., Ding Y., Et al., Zero- sequence circulating current reduction for parallel t-type three-level power converter systems, Electric Power Engineering Technology, 36, 5, pp. 52-58, (2017)
  • [9] You L., Wang R., Guo M., Controlling method of cascaded H-bridge multilevel inverter based on CPS-SPWM technique, Electrical Engineering, 17, 9, pp. 5-11, (2016)
  • [10] Massoud A.M., Finney S.J., Williams B.W., Practical issues of three-phase, three-wire, voltage source inverter-based shunt active power filters, 11th International Conference on Harmonics and Quality of Power, IEEE, pp. 436-441, (2004)