Study on compensation to dead-time effect of three-level APF

被引:0
|
作者
Fu, Yimu [1 ]
Chang, Wenjing [2 ]
Liu, Xin [2 ]
Huang, Jie [2 ]
Xu, Lu [3 ]
Zhang, Youliang [4 ]
Zhu, Xiaolong [5 ]
机构
[1] State Grid Shandong Elect Power Co, Econ & Technol Res Inst, Jinan 250000, Peoples R China
[2] State Grid Anhui Maintenance Co, Hefei 230000, Peoples R China
[3] State Grid Shandong Maintenance Co, Jinan 250000, Peoples R China
[4] Yingda Media Investment Grp Co LTD, Beijing 100000, Peoples R China
[5] State Grid Jiangsu Elect Power Engn Consulting CO, Nanjing 210000, Peoples R China
关键词
Dead-time Effect; State Equation; Tracking Error; Closed-Loop Characteristic;
D O I
10.23919/chicc.2019.8866621
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In order to solve the problem of dead time effect of the active power filter (APF), this paper gets down to the dead time effect of the generation principle and combines three-level switching state equations on the basis of three-level APF equivalent switching circuit. The linear relationship between the dead time and the current tracking error is calculated and detruded. Furthermore, it interprets explanation the effect of dead time clearly. A dead time compensation method is proposed for the problem of dead time effect. The control principle of this compensation method is given, and the performance of the system is analyzed from the point of view of the closed-loop characteristic of the control system. Compared with the dead time compensation system, it is found that the latter has better steady state performance. Finally, simulation and experimental results show that the proposed method can effectively suppress the dead time effect, and prove the effectiveness of the proposed method.
引用
收藏
页码:7275 / 7279
页数:5
相关论文
共 50 条
  • [31] Online Feedback Dead Time Compensation Strategy for Three-Level T-Type Inverters
    Wang, Dafang
    Wang, Mingyu
    Shen, Yuelei
    Li, Qi
    Liang, Xiu
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2020, 67 (09) : 7260 - 7268
  • [32] Contour-Based Dead-Time Harmonic Analysis in a Three-Level Neutral-Point-Clamped Inverter
    Dolguntseva, Irina
    Krishna, Remya
    Soman, Deepak E.
    Leijon, Mats
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2015, 62 (01) : 203 - 210
  • [33] A Reduced Common-Mode Voltage Control Scheme for Three-Level H10 Converter Considering Dead-Time Effect
    Long, Bo
    Chen, Zhihao
    Hu, Chengkun
    Rodriguez, Jose
    Guerrero, Josep M.
    Zang, Xian
    IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS, 2024, 12 (01) : 695 - 706
  • [34] Dead-time Compensation of Adjustable Dead-time Controlled Three-Phase Resonant Snubber Inverter for Induction Motor Drive Application
    Morohoshi, Takuya
    Hoshi, Nobukazu
    Haruna, Junnosuke
    2013 INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS), 2013, : 1766 - 1770
  • [35] Dead-Time Compensation for the First-Order Dead-Time Processes: Towards a Broader Overview
    Huba, Mikulas
    Bistak, Pavol
    Vrancic, Damir
    Zakova, Katarina
    MATHEMATICS, 2021, 9 (13)
  • [36] Dead-time Compensation and Realization Method for 3-Level NPC Inverter
    Hong, Seok-Jin
    Shin, Soo-Cheol
    Kim, Hak-Sung
    Won, Chung-Yuen
    2014 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE AND EXPO (ITEC) ASIA-PACIFIC 2014, 2014,
  • [37] Research of Dead-time Compensation in SVPWM Modulator
    Chao, Zeyun
    Xu, Zhixin
    Kong, Lili
    ICEMS 2008: PROCEEDINGS OF THE 11TH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS, VOLS 1- 8, 2008, : 1973 - 1975
  • [38] Dead-Time Compensation for Wave/String PDEs
    Krstic, Miroslav
    JOURNAL OF DYNAMIC SYSTEMS MEASUREMENT AND CONTROL-TRANSACTIONS OF THE ASME, 2011, 133 (03):
  • [39] SVPWM strategy for inverter dead-time compensation
    Cheng, Xiaomeng
    Lu, Haifeng
    Qu, Wenlong
    Zhang, Xing
    Fan, Yang
    Wu, Lixun
    Jiang, Shijun
    Qinghua Daxue Xuebao/Journal of Tsinghua University, 2008, 48 (07): : 1077 - 1080
  • [40] Generalized APF based on three-level inverter
    Xue, Chang
    Wang, Jianze
    Ji, Yanchao
    Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2012, 32 (09): : 60 - 64