Model Predictive MRAS Estimator for Sensorless Induction Motor Drives

被引:120
|
作者
Zbede, Yaman B. [1 ]
Gadoue, Shady M. [1 ,2 ]
Atkinson, David J. [1 ]
机构
[1] Newcastle Univ, Sch Elect & Elect Engn, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
[2] Univ Alexandria, Fac Engn, Dept Elect Engn, Alexandria 21544, Egypt
关键词
Induction motor (IM) drive; model reference adaptive control; position estimation; predictive control; speed estimation; vector control; PARAMETER-IDENTIFICATION; VECTOR CONTROL; SPEED ESTIMATORS; TORQUE CONTROL; MACHINE; FLUX; OBSERVER; CONTROLLER; INVERTER; VOLTAGE;
D O I
10.1109/TIE.2016.2521721
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 presents a novel predictive model reference adaptive system (MRAS) speed estimator for sensorless induction motor (IM) drives applications. The proposed estimator is based on the finite control set-model predictive control (FCS-MPC) principle. The rotor position is calculated using a search-based optimization algorithm which ensures a minimum speed tuning error signal at each sampling period. This eliminates the need for a proportional-integral (PI) controller which is conventionally employed in the adaption mechanism of MRAS estimators. Extensive experimental tests have been carried out to evaluate the performance of the proposed estimator using a 2.2-kW IM with a field-oriented control (FOC) scheme employed as the motor control strategy. Experimental results show improved performance of the MRAS scheme in both open-and closed-loop sensorless modes of operation at low speeds and with different loading conditions including regeneration. The proposed scheme also improves the system robustness against motor parameter variations and increases the maximum bandwidth of the speed loop controller.
引用
收藏
页码:3511 / 3521
页数:11
相关论文
共 50 条
  • [31] Efficient Multivariable Generalized Predictive Control for Sensorless Induction Motor Drives
    Alkorta, Patxi
    Barambones, Oscar
    Antonio Cortajarena, Jose
    Zubizarrreta, Asier
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2014, 61 (09) : 5126 - 5134
  • [32] Sensorless Speed Control With MRAS for Induction Motor Drive
    Zorgani, Y. Agrebi
    Koubaa, Y.
    Boussak, M.
    2012 XXTH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES (ICEM), 2012, : 2259 - 2265
  • [33] Sensorless Control of Induction Motor Using Modified MRAS
    Brandstetter, P.
    INTERNATIONAL REVIEW OF ELECTRICAL ENGINEERING-IREE, 2012, 7 (03): : 4404 - 4411
  • [34] Performance of the Speed Sensorless Induction Motor Drive for Traction Application with MRAS type Speed and Flux Estimator
    Dybkowski, Mateusz
    Orlowska-Kowalska, Teresa
    PROCEEDINGS OF THE 13TH INTERNATIONAL CONFERENCE ON OPTIMIZATION OF ELECTRICAL AND ELECTRONIC EQUIPMENT, VOLS 1-5, 2012, : 477 - 481
  • [35] MRAS SPEED ESTIMATOR FOR SPEED SENSORLESS IFOC OF AN INDUCTION MOTOR DRIVE USING FUZZY LOGIC CONTROLLER
    Kumar, Amit
    Ramesh, Tejavathu
    2015 INTERNATIONAL CONFERENCE ON ENERGY, POWER AND ENVIRONMENT: TOWARDS SUSTAINABLE GROWTH (ICEPE), 2015,
  • [36] Model Predictive Control for Extended Kalman Filter Based Speed Sensorless Induction Motor Drives
    Li, Jie
    Zhang, Li-Heng
    Niu, Ying
    Ren, Hai-Peng
    APEC 2016 31ST ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION, 2016, : 2770 - 2775
  • [37] MRAS Based Speed Estimator for Sensorless Vector Control of a Linear Induction Motor with Improved Adaptation Mechanisms
    Holakooie, Mohammad Hosein
    Taheri, Asghar
    Sharifian, Mohammad Bagher Bannae
    JOURNAL OF POWER ELECTRONICS, 2015, 15 (05) : 1274 - 1285
  • [38] Convergence analysis of back-EMF MRAS observers used in sensorless control of induction motor drives
    Bensiali, N.
    Etien, E.
    Benalia, N.
    MATHEMATICS AND COMPUTERS IN SIMULATION, 2015, 115 : 12 - 23
  • [39] Sensorless control of induction motor drives
    Holtz, J
    PROCEEDINGS OF THE IEEE, 2002, 90 (08) : 1359 - 1394
  • [40] A MRAS-based adaptive pseudoreduced-order flux observer for sensorless induction motor drives
    Kojabadi, HM
    Chang, LC
    Doraiswami, R
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2005, 20 (04) : 930 - 938