Clustered Voltage Balance Control Strategy of Cascaded H-bridge STATCOM With Suppressing DC Voltage Fluctuation

被引:0
|
作者
Yuan Y. [1 ]
Zhao X. [1 ]
Xu G. [1 ]
Wei J. [2 ]
Zhou J. [1 ]
机构
[1] School of Electrical and Power Engineering, China University of Mining and Technology, Xuzhou
[2] Jining Power Supply Company, State Grid Shandong Electric Power Co., Ltd., Jining
来源
基金
中国国家自然科学基金;
关键词
Cascaded H-bridge STATCOM; Clustered voltage balance control; Model predictive control; Zero-sequence voltage;
D O I
10.13335/j.1000-3673.pst.2021.1262
中图分类号
学科分类号
摘要
In the traditional three-layer capacitor voltage balance control of the three-phase cascaded H-bridge STATCOM, the dynamic performance of the clustered voltage balance control is poor, and it causes harmonics to the power grid. This paper proposes a clustered voltage balance strategy based on model predictive control, which can suppress DC voltage fluctuation at the same time. The proposed control strategy introduces a new cost function, which has the characteristics of balancing clustered voltage and suppressing DC side fluctuation. Based on this cost function, the injected zero-sequence voltage can be flexibly controlled to improve the dynamic performance of clustered voltage balance within the remaining modulated voltage range. Meanwhile, the fluctuation of capacitor voltage on the DC side voltage is also suppressed. The proposed control method makes use of the residual modulation voltage of the system, so that the system can avoid the problem of over-modulation without limiting the amplitude of the injected zero-sequence voltage, which simplifies the control system. Experimental verification was carried out on the five-level star-type cascaded H-bridge STATCOM experimental platform. The experimental results show that the clustered voltage equalization scheme based on model predictive control can effectively improve the dynamic performance of clustered voltage balance and suppressing DC side voltage fluctuation. © 2022, Power System Technology Press. All right reserved.
引用
收藏
页码:1494 / 1502
页数:8
相关论文
共 25 条
  • [1] DIXON J, MORAN L, RODRIGUEZ J, Et al., Reactive power compensation technologies: State-of-the-art review, Proceedings of the IEEE, 93, 12, pp. 2144-2164, (2005)
  • [2] REN Hongyu, WANG Zhuding, ZHANG Yongbin, Et al., Reactive power optimization planning of high-voltage distribution networks with technical standards being considered, Power System Technology, 44, 4, pp. 1463-1472, (2020)
  • [3] XU Yao, LI Fangxing, Adaptive PI control of STATCOM for voltage regulation, IEEE Transactions on Power Delivery, 29, 3, pp. 1002-1011, (2014)
  • [4] KUMAR V V S P, FERNANDES B G., Active power decoupling topology with fault tolerant ability for a single phase grid connected inverter, Proceedings of the 41st Annual Conference of the IEEE Industrial Electronics Society, pp. 3423-3428, (2015)
  • [5] (2017)
  • [6] AKAGI H, INOUE S, YOSHII T., Control and performance of a transformerless cascade PWM STATCOM with star configuration, IEEE Transactions on Industry Applications, 43, 4, pp. 1041-1049, (2007)
  • [7] BETZ R E, SUMMERS T, FURNEY T., Symmetry compensation using a H-bridge multilevel STATCOM with zero sequence injection, Conference Record of the 2006 IEEE Industry Applications Conference Forty-First IAS Annual Meeting, pp. 1724-1731, (2006)
  • [8] SHI Youjie, LIU Bangyin, SHI Yanjun, Et al., Individual phase current control based on optimal zero-sequence current separation for a star-connected cascade STATCOM under unbalanced conditions, IEEE Transactions on Power Electronics, 31, 3, pp. 2099-2110, (2016)
  • [9] GUO Leilei, JIN Nan, LI Yanyan, Et al., Grid voltage sensorless model predictive control for grid-connected inverters, Transactions of China Electrotechnical Society, 35, 12, pp. 2612-2622, (2020)
  • [10] XIN Yechun, WANG Yanxu, LI Guoqing, Et al., Finite control set model predictive control method with fast optimization based on T-type three-level grid-connected inverter, Transactions of China Electrotechnical Society, 36, 8, pp. 1681-1692, (2021)