An Optimal Double-Vector Finite Set Model Predictive Control Strategy Based on Deadbeat for Vienna Rectifier

被引:0
|
作者
Feng, Xingtian [1 ]
Dai, Zhanjiang [1 ]
Song, Xu [1 ]
机构
[1] China Univ Petr East China, Coll New Energy, Qingdao, Peoples R China
基金
中国国家自然科学基金;
关键词
Vienna rectifiers; Current distortion; Neutral-point (NP) voltage balancing; Optimization of vector action sequence; Finite set model predictive control (FS-MPC); POINT VOLTAGE BALANCE; CARRIER-BASED PWM; MODULATION; CAPABILITY; SCHEME;
D O I
10.1007/s42835-024-01869-w
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The traditional finite set model predictive control for Vienna rectifier takes the minimum cost function as the control goal and outputs a single optimal vector by traversing the set of candidate vectors. However, it can cause great power fluctuation and high input current distortion. To solve these problems, this paper proposes an optimized double-vector model predictive control strategy for Vienna rectifiers. This strategy outputs two action vectors in the control cycle to jointly track the reference, and the action time of the two action vectors is calculated by the idea of deadbeat. In order to reduce power fluctuations during the control process, the sequence of vector actions within adjacent control cycles and control periods is optimally adjusted. At the same time, the neutral point (NP) potential sign on the DC side is pre-judged to screen the redundant small vectors involved in the cyclic calculation to balance NP voltage on the DC side. Simulation and experimental results prove that the proposed control strategy can effectively reduce the power fluctuation, relieve control system dependence on sampling frequency, improve the quality of the input current and balance the NP voltage in the DC side.
引用
收藏
页码:4407 / 4419
页数:13
相关论文
共 50 条
  • [1] Double-vector Model Predictive Control Strategy of Three-level Inverter Based on Finite State Machine
    Zhou, Hanbin
    Yang, Jian
    Huang, Liansheng
    Song, Dongran
    Chen, Xiaojiao
    Dong, Mi
    [J]. Dianli Xitong Zidonghua/Automation of Electric Power Systems, 2023, 47 (11): : 155 - 164
  • [2] Three-Layer Double-Vector Model Predictive Control Strategy for Current Harmonic Reduction and Neutral-Point Voltage Balance in Vienna Rectifier
    Zhang, Hongliang
    Zhang, Chenghui
    Xing, Xiangyang
    Liu, Chang
    Li, Xiaoyan
    Zhang, Boxue
    [J]. IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 2022, 8 (01) : 251 - 262
  • [3] Finite Control Set Model Predictive Control for dc Voltage Balancing in Vienna Rectifier
    Khorasgani, S. Majid Hosseini
    Izadinia, Alireza
    Karshenas, Hamid R.
    [J]. 2016 24TH IRANIAN CONFERENCE ON ELECTRICAL ENGINEERING (ICEE), 2016, : 687 - 692
  • [4] Optimized Current Control of Vienna Rectifier Using Finite Control Set Model Predictive Control
    Izadinia, Ali R.
    Karshenas, Hamid R.
    [J]. 2016 7TH POWER ELECTRONICS AND DRIVE SYSTEMS & TECHNOLOGIES CONFERENCE (PEDSTC), 2016, : 596 - 601
  • [5] Sliding Mode Predictive Control of Vienna Rectifier Based on Optimal Vector Synthesis
    Dang, Chaoliang
    Wang, Fei
    Liu, Ding
    Tong, Xiangqian
    Song, Weizhang
    [J]. Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2022, 42 (23): : 8699 - 8707
  • [6] Double-vector based deadbeat torque control of PMSMs with power factor improvement
    Li, Hongfeng
    Xu, Haobo
    [J]. JOURNAL OF POWER ELECTRONICS, 2024,
  • [7] Model predictive control strategy of a Vienna rectifier based on duty cycle control
    基于占空比控制的Vienna整流器模型预测控制策略
    [J]. 2021, Power System Protection and Control Press (49):
  • [8] Model-Free Predictive Current Control Strategy of Grid-Connected Inverter Based on Double-Vector
    Tao, Rui
    Zheng, Yin
    Fengxiang, Wang
    Geye, Lu
    Zhen, Li
    [J]. Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2023, 38 (14): : 3759 - 3768
  • [9] A Novel Optimal Voltage Vector Selection Control Strategy for Vienna Rectifier
    Sun, Yongming
    Feng, Xingtian
    Dai, Zhanjiang
    Ma, Wenzhong
    [J]. IEEE ACCESS, 2023, 11 : 49422 - 49430
  • [10] Model Free Predictive Current Control of Vienna Rectifier Based on Space Vector Modulation
    Zhang, Yongchang
    Qu, Qiyan
    Yang, Haitao
    [J]. Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2022, 37 (21): : 5541 - 5547