Loss-minimization control of vector-controlled induction motor drives

被引:10
|
作者
Yang, SM [1 ]
Lin, FC [1 ]
机构
[1] Tamkang Univ, Dept Mech & Electromech Engn, Taipei 251, Taiwan
关键词
induction motor; loss minimization; vector control; fuzzy logic; auto-commissioning;
D O I
10.1080/02533839.2003.9670752
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
It is well known that the efficiency of induction motor drives under partial load can be improved via manipulation of its field excitation. Among the numerous loss-minimization schemes previously proposed, the scheme that uses motor power factor as the main control variable has the advantages of high sensitivity and ease of implementation. But how the optimal power factor commands can be generated is not well documented. In this paper, a loss-minimization scheme that uses power factor control with automatic measurement of the minimum-loss power factor commands for vector-controlled induction motor drives is proposed. A fuzzy logic compensator is used in the controller to improve the accuracy of the command generator. The scheme is practical for implementation and does not require a priori knowledge of motor parameters. For verification, the loss-minimization controller was tuned according to the data from a set of commercially available induction servo motors ranging from I to 50 hp. The computed results shown that the errors between the calculated and the theoretical optimal power factor commands are all within 0.03. In addition, the experimental results have validated the effectiveness of this scheme in minimizing the motor operating losses at light loads.
引用
收藏
页码:37 / 45
页数:9
相关论文
共 50 条
  • [21] Adaptive control of vector-controlled induction motor based on parameter identification
    Xu, Xia-Zeng
    Li, Ye-Song
    Qin, Yi
    Zhongshan Daxue Xuebao/Acta Scientiarum Natralium Universitatis Sunyatseni, 2002, 41 (06):
  • [22] ANALYSIS AND DESIGN OF MICROPROCESSOR-BASED VECTOR-CONTROLLED INDUCTION-MOTOR DRIVES
    KAO, YT
    LIU, CH
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 1992, 39 (01) : 46 - 54
  • [23] Chaos detection and control by neural networks in vector-controlled induction motor
    Asakura, T
    Saito, Y
    Shioya, M
    KNOWLEDGE-BASED INTELLIGENT INFORMATION ENGINEERING SYSTEMS & ALLIED TECHNOLOGIES, PTS 1 AND 2, 2001, 69 : 1062 - 1066
  • [24] Capacitor Voltage Balancing Control of Four-Leg Inverter for Two Vector-Controlled Induction Motor Drives
    Tanaka, Haruki
    Saito, Shun
    Matsuse, Kouki
    IEEJ JOURNAL OF INDUSTRY APPLICATIONS, 2014, 3 (04) : 310 - 317
  • [25] Loss minimization control of induction motor drives based on genetic algorithms
    Poirier, E
    Ghribi, M
    Kaddouri, A
    IEMDC 2001: IEEE INTERNATIONAL ELECTRIC MACHINES AND DRIVES CONFERENCE, 2001, : 475 - 478
  • [26] Effect of parameters variety on vector-controlled induction motor
    Xu, Xiaozeng
    Li, Yesong
    Qin, Yi
    Huazhong Keji Daxue Xuebao (Ziran Kexue Ban)/Journal of Huazhong University of Science and Technology (Natural Science Edition), 2003, 31 (07):
  • [27] Dynamic Performance Analysis for Different Vector-Controlled CSI-Fed Induction Motor Drives
    Mark, Arul Prasanna
    Irudayaraj, Gerald Christopher Raj
    Vairamani, Rajasekaran
    Mylsamy, Kaliamoorthy
    JOURNAL OF POWER ELECTRONICS, 2014, 14 (05) : 989 - 999
  • [28] Vector-Controlled Optimal Drive System for the Induction Motor
    Gaiceanu, Marian
    Rosu, Emil
    Paduraru, Romeo
    Munteanu, Traian
    2013 4TH INTERNATIONAL SYMPOSIUM ON ELECTRICAL AND ELECTRONICS ENGINEERING (ISEEE), 2013,
  • [29] Compensation of Torque-Producing Stator Current Error for Vector-Controlled Induction Motor Drives
    Kuchar, Martin
    Palacky, Petr
    Perdukova, Daniela
    Sobek, Martin
    ENERGIES, 2022, 15 (03)
  • [30] Poles allocation for robust adaptive flux observers in sensorless vector-controlled induction motor drives
    Pana, T
    Campian, HA
    7TH WORLD MULTICONFERENCE ON SYSTEMICS, CYBERNETICS AND INFORMATICS, VOL VII, PROCEEDINGS, 2003, : 98 - 102