A multi axis space phasor based current hysteresis controller for PWM inverters

被引:0
|
作者
Mistry, VM
Waikar, SP
Gopakumar, K
Umanand, L
Ranganathan, VT
机构
关键词
D O I
暂无
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
In conventional three phase current hysteresis controllers, the current error along the three phase axes are independently controlled This will result in random selection of switching vectors causing high inverter switching losses. In this paper, a space phasor based multi axis current hysteresis controller is proposed, in which the current error along the orthogonal axes (jA, jB, jC) are monitored. The current error boundary is a hexagon. The proposed control scheme can be implemented using simple look up tables. The advantages of the proposed current hysteresis controlled PWM scheme, when compared to other multi level current hysteresis controllers, is that only the adjacent vectors close to the motor back emf space phasor voltage, is only used for the inverter switching, for the entire speed range (optimum PWM switching). In the present scheme, the selection of the inverter voltage vectors for optimum PWM switching is achieved by, without any computation of the machine voltage space phasor, for the full speed range of the drive system. The proposed scheme is self adapting, as far as the motor space phasor voltage is concerned, and also maintains the controller simplicity and quick response features of a hysteresis current controller. The scheme is simulated and also experimentally verified.
引用
收藏
页码:480 / 486
页数:7
相关论文
共 50 条
  • [41] New hysteresis current controller for single-phase full-bridge inverters
    Dahono, P. A.
    IET POWER ELECTRONICS, 2009, 2 (05) : 585 - 594
  • [42] A space phasor based current hysteresis controller using adjacent inverter voltage vectors with smooth transition to six step operation for a three phase voltage source inverter
    Baiju, MR
    Mohapatra, KK
    Kanchan, RS
    Tekwani, PN
    Gopakumar, K
    EPE JOURNAL, 2005, 15 (01) : 36 - 47
  • [43] Multirate deadbeat control for PWM inverters using FPGA based hardware controller
    Miyashita, K
    Hara, H
    Shimogata, S
    Yokoyama, T
    IECON-2002: PROCEEDINGS OF THE 2002 28TH ANNUAL CONFERENCE OF THE IEEE INDUSTRIAL ELECTRONICS SOCIETY, VOLS 1-4, 2002, : 95 - 100
  • [44] A New Vector-Based Hysteresis Current Control Scheme for Three-Phase PWM Voltage-Source Inverters
    Mohseni, Mansour
    Islam, Syed M.
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2010, 25 (09) : 2299 - 2309
  • [45] A hybrid current controller for a 1-phase pwm rectifier combining hysteresis and carrier-based schemes to achieve a zero current error and unipolar PWM waveforms
    Salmon, J
    Zhang, H
    PESC 04: 2004 IEEE 35TH ANNUAL POWER ELECTRONICS SPECIALISTS CONFERENCE, VOLS 1-6, CONFERENCE PROCEEDINGS, 2004, : 1239 - 1245
  • [46] A hybrid carrier-based hysteresis current controller for pwm rectifiers using an internal voltage reference signal to achieve a pwm cycle zero current-error
    Salmon, J
    Zhang, H
    PROCEEDINGS OF THE FOURTH IASTED INTERNATIONAL CONFERENCE ON POWER AND ENERGY SYSTEMS, 2004, : 237 - 242
  • [47] Fuzzy logic current controller for three-phase voltage source PWM-inverters
    Rukonuzzaman, M
    Nakaoka, M
    IAS 2000 - CONFERENCE RECORD OF THE 2000 IEEE INDUSTRY APPLICATIONS CONFERENCE, VOLS 1-5, 2000, : 1163 - 1169
  • [48] Novel control scheme for STATCOM using space vector modulation based hysteresis current controller
    Marei, MI
    El-Saadany, EF
    Salama, MMA
    2004 11TH INTERNATIONAL CONFERENCE ON HARMONICS AND QUALITY OF POWER, 2004, : 58 - 65
  • [49] Research of Hysteresis PWM Rectifier Based on the Current Vector Control
    Yang, Guotian
    Wei, Zhenhua
    Wang, Shuiming
    PACIIA: 2008 PACIFIC-ASIA WORKSHOP ON COMPUTATIONAL INTELLIGENCE AND INDUSTRIAL APPLICATION, VOLS 1-3, PROCEEDINGS, 2008, : 86 - 90
  • [50] A Hysteresis Current Controller for Single-Phase Three-Level Voltage Source Inverters
    Mao, Huifeng
    Yang, Xu
    Chen, Zenglu
    Wang, Zhaoan
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2012, 27 (07) : 3330 - 3339