Voltage Balance Control Strategy for FC 3-Level Inverter Based on Zero Vector Time Redistribution

被引:0
|
作者
Li, Wei [1 ]
Wang, Yuefan [1 ]
Ma, Xiaoyong [2 ]
机构
[1] Tianjin Univ Technol, Sch Elect & Elect Engn, 391 Binshui Xidao, Tianjin 300384, Peoples R China
[2] Tianjin Univ, Sch Elect & Informat Engn, 92 Weijin Lu, Tianjin 300000, Peoples R China
关键词
fly capacitor; three-level inverter; voltage balance;
D O I
10.1109/ICMA61710.2024.10633021
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper proposes a voltage balancing method based on adjusting the action time of the O redundant vector to address the voltage balancing problem of flying capacitor three-level. Firstly, the main reason for capacitor voltage imbalance in the flying capacitor three-level inverter are analyzed from the topology structure. Based on traditional voltage equalization control, a scheme of voltage regulation coefficient for flying capacitors is introduced: sampling output phase current and flying capacitor voltage, adjusting the time allocation of O redundancy state according to the deviation between actual capacitor voltage and expected value, and adjusting the impact of output current on capacitor voltage charging and discharging, in order to achieve voltage equalization effect on flying capacitors. Finally, a simulation model was built in Matlab/Simulink and an experimental platform was established for verification. The results showed that the scheme achieved stable control of capacitor voltage.
引用
收藏
页码:210 / 215
页数:6
相关论文
共 50 条
  • [1] Analytical Solution to Voltage Balance Control in a 3-Level Neutral-Point-Clamped Inverter
    Kazemirova, Yulia
    Anuchin, Alecksey
    Shpak, Dmitry
    Safonov, Yury
    2018 IEEE 59TH INTERNATIONAL SCIENTIFIC CONFERENCE ON POWER AND ELECTRICAL ENGINEERING OF RIGA TECHNICAL UNIVERSITY (RTUCON), 2018,
  • [2] AT-NPC 3-Level Inverter-Fed Induction Motor Vector Control With Neutral Point Voltage Control
    Sudo, K.
    Tsuji, M.
    Hamasaki, S.
    Fukuoka, T.
    Ichinose, H.
    2018 INTERNATIONAL POWER ELECTRONICS CONFERENCE (IPEC-NIIGATA 2018 -ECCE ASIA), 2018, : 1240 - 1245
  • [3] DC voltage imbalance control of 3-level 3-leg split inverter system
    Tang, J
    Wong, MC
    Han, YD
    POWER AND ENERGY SYSTEMS, PROCEEDINGS, 2003, : 382 - 387
  • [4] High Efficiency of 3-level Inverter embedding Neutral Point Voltage Shifting Control
    Munechika, Hiroki
    Ohori, Akihiro
    Hattori, Nobuyuki
    Nakaoka, Mutsuo
    2015 IEEE INTERNATIONAL TELECOMMUNICATIONS ENERGY CONFERENCE (INTELEC), 2015,
  • [5] A PWM Strategy for the Minimisation of Losses in a 3-level T-type Voltage Source Inverter
    Anuchin, Alecksey
    Gulyaeva, Maria
    Zharkov, Alexandr
    Shpak, Dmitry
    Aliamkin, Dmitry
    Vagapov, Yuriy
    2018 INTERNATIONAL SYMPOSIUM ON POWER ELECTRONICS, ELECTRICAL DRIVES, AUTOMATION AND MOTION (SPEEDAM), 2018, : 703 - 708
  • [6] The SVPWM Modulation Technique with Active Voltage Balancing Control for 3-level ANPC Inverter
    Janik, Dusan
    Kosan, Tomas
    Janous, Stepan
    Sadsky, Jaroslav
    Peroutka, Zdenek
    2015 INTERNATIONAL CONFERENCE ON APPLIED ELECTRONICS (AE), 2015, : 81 - 84
  • [7] Research for IGBT 3-level invert voltage space vector control method
    Cui, J.G.
    Tao, S.G.
    Tongji Daxue Xuebao/Journal of Tongji University, 2001, 29 (02): : 164 - 168
  • [8] Space Vector based Field Oriented Control of Permanent Magnet Synchronous Motor with a 3-Level Inverter Scheme
    Pinkymol, Harikrishna Raj
    Maswood, Ali Iftekhar
    Venkataraman, Aditya
    2013 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE AND EXPO (ITEC), 2013,
  • [9] Space Vector based Zero Sequence Voltage Elimination Technique for an Even Level Inverter
    Suresh, Tina
    Chandini, G. S.
    Shiny, G.
    2018 8TH IEEE INDIA INTERNATIONAL CONFERENCE ON POWER ELECTRONICS (IICPE), 2018,
  • [10] Common-Mode Voltage Eliminated 2-level PWM Inverter Based on a Cascaded 3-level Inverter
    Chandini, G. S.
    Shiny, G.
    Baiju, M. R.
    2016 INTERNATIONAL CONFERENCE ON ELECTRICAL, ELECTRONICS, AND OPTIMIZATION TECHNIQUES (ICEEOT), 2016, : 561 - 566