Research on Electrolytic Capacitor-Less Motor Drive System Based on Tiny Boost Converter

被引:0
|
作者
Zhang C. [1 ]
Hu X. [1 ]
Zhu X. [1 ]
Xu L. [1 ]
Quan L. [1 ]
机构
[1] School of Electrical and Information Engineering, Jiangsu University, Zhenjiang
关键词
Active power decoupling; DC-link voltage ripple; Electrolytic capacitor-less; Tiny Boost converter;
D O I
10.19595/j.cnki.1000-6753.tces.181371
中图分类号
TN6 [电子元件、组件];
学科分类号
080903 ;
摘要
A novel active power decoupling circuit with tiny Boost capability and a novel control strategy for the electrolytic capacitor-less drive system are proposed. Under the same boost voltage condition, the working range of power device of the circuit is more reasonable, and the current quality on the input side of the electrolytic capacitor-less driving system is effectively improved while reducing the voltage stress of the inverter power device. The total harmonics of the DC bus voltage AC component are introduced into the input reference current control of the drive system to control the DC bus voltage within the given range, and achieve high performance operation of the electrolytic capacitor-less drive system under static and dynamic conditions. The working mechanism of the new active power decoupling circuit is analyzed, and its mathematical model is deduced. The design of key parameters of the circuit is described in detail. Finally, the effectiveness of the decoupling circuit and the corresponding electrolytic capacitor-less driving system is verified by a prototype. © 2019, Electrical Technology Press Co. Ltd. All right reserved.
引用
下载
收藏
页码:3322 / 3332
页数:10
相关论文
共 26 条
  • [1] Sankaran V., Rees F., Avant C., Electrolytic capacitor life testing and prediction, 32rd IEEE Industry Applications Conference, pp. 1058-1065, (1997)
  • [2] Wang Z., Zheng Z., Li Y., Et al., Predictive current control for three phase induction machine using multi-steps prediction horizon, Transactions of China Electrotechnical Society, 33, 9, pp. 1975-1984, (2018)
  • [3] Zhang H., Xu H., Fang C., Et al., Torque ripple suppression method of direct-drive permanent magnet synchronous motor based on proportional-integral and quasi resonant controller, Transactions of China Electrotechnical Society, 32, 19, pp. 41-51, (2017)
  • [4] Fu H., Zuo Y., Liu C., Et al., A variable input gain proportional integral controller for permanent magnetic synchronous motor speed-regulation system, Transactions of China Electro-Technical Society, 32, 1, pp. 168-174, (2017)
  • [5] Zhang C., Yang L., Niu T., Et al., Comparison and analysis of energy storage tech-nology to balance fluctuation of wind power output, Power System Protection and Control, 43, 7, pp. 149-154, (2015)
  • [6] Lei Y., Li J., Li Y., Control strategy of three-phase LCL grid-connected inverter based on quasi-PR adjuster, Power System Protection and Control, 42, 12, pp. 44-50, (2014)
  • [7] Sang B., Tao Y., Zheng G., Et al., Research on topology and control strategy of the super-capacitor and battery hybrid energy storage, Power System Protection and Control, 42, 12, pp. 44-50, (2014)
  • [8] Shao S., Abdi E., McMahon R., Low-cost variable speed drive based on a brushless doubly-fed motor and a fractional unidirectional converter, IEEE Transactions on Industrial Electronics, 59, 1, pp. 317-325, (2012)
  • [9] Chen W., Hui S.Y.R., Elimination of an electrolytic capacitor in AC/DC light-emitting diode (LED) driver with high input power factor and constant output current, IEEE Transactions on Power Electronics, 27, 3, pp. 1598-1607, (2012)
  • [10] Zare F., Harmonics issues of three-phase diode rectifiers with a small DC link capacitor, International Power Electronics and Motion Control Conference, pp. 912-917, (2014)