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      KCI등재 SCIE SCOPUS

      Robust Sensorless Sliding Mode Flux Observer for DTC-SVM-based Drive with Inverter Nonlinearity Compensation

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      https://www.riss.kr/link?id=A99877497

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      다국어 초록 (Multilingual Abstract)

      This paper presents a robust and speed-sensorless stator flux estimation for induction motor direct torque control. The proposed observer is based on sliding mode approach. Stator electrical equations are used in the rotor orientation reference frame ...

      This paper presents a robust and speed-sensorless stator flux estimation for induction motor direct torque control. The proposed observer is based on sliding mode approach. Stator electrical equations are used in the rotor orientation reference frame to eliminate the observer dependence on rotor speed. Lyapunov’s concept for systems stability is adopted to confine the observer gain. Furthermore, the sensitivity of the observer to parameter mismatch is recovered with an adaptation technique. The nonlinearities of the pulse width modulation voltage source inverter are estimated and compensated to enhance stability at low speeds. Therefore, a new method based on the model reference adaptive system is proposed. Simulation and experimental results are shown to verify the feasibility and effectiveness of the proposed algorithms.

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      목차 (Table of Contents)

      • Abstract
      • Ⅰ. INTRODUCTION
      • Ⅱ. SVM FOR INDUCTION MOTOR DIRECT TORQUE CONTROL
      • Ⅲ. SMO-BASED STATOR FLUX ESTIMATION
      • Ⅳ. ONLINE INVERTER NONLINEARITY ESTIMATION AND COMPENSATION
      • Abstract
      • Ⅰ. INTRODUCTION
      • Ⅱ. SVM FOR INDUCTION MOTOR DIRECT TORQUE CONTROL
      • Ⅲ. SMO-BASED STATOR FLUX ESTIMATION
      • Ⅳ. ONLINE INVERTER NONLINEARITY ESTIMATION AND COMPENSATION
      • Ⅴ. SIMULATION RESULTS
      • Ⅵ. EXPERIMENTAL RESULTS
      • Ⅶ. CONCLUSIONS
      • REFERENCES
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      참고문헌 (Reference)

      1 A. Ghaderi, "Wide-speed-range sensorless vector control of synchronous reluctance motors based on extended programmable cascaded low-pass filters" 58 (58): 2322-2333, 2011

      2 M. S. Zaky, "Very low speed and zero speed estimations of sensorless induction motor drives" 80 (80): 143-151, 2010

      3 T. Orlowska-Kowalska, "Stator-current based MRAS estimator for a wide range speed-sensorless induction-motor drive" 57 (57): 1296-1308, 2010

      4 M. S. Jaafarizedah, "State Estimation of Induction Motor Drives Using the Unscented Kalman Filter" 59 (59): 4207-4216, 2012

      5 S. Zaky, "Stability analysis of speed and stator resistance estimators for sensorless inductionmotor drives" 59 (59): 858-870, 2012

      6 Y. Oguz, "Speed estimation of vector controlled squirrel cage asynchronous motor with artificial neural networks" 52 (52): 675-686, 2011

      7 J. Guzinski, "Speed Sensorless Induction Motor Drive with Predictive Current Controller" 60 (60): 699-709, 2013

      8 V. I. Utkin, "Sliding Mode in Control and Optimization" Springer Verlag 1992

      9 M. Di Lella, "Semi-Top Technical Information"

      10 D. R. Wrobel, "Rotor design for sensorless position estimation in permanent magnet machines" 58 (58): 3815-3824, 2011

      1 A. Ghaderi, "Wide-speed-range sensorless vector control of synchronous reluctance motors based on extended programmable cascaded low-pass filters" 58 (58): 2322-2333, 2011

      2 M. S. Zaky, "Very low speed and zero speed estimations of sensorless induction motor drives" 80 (80): 143-151, 2010

      3 T. Orlowska-Kowalska, "Stator-current based MRAS estimator for a wide range speed-sensorless induction-motor drive" 57 (57): 1296-1308, 2010

      4 M. S. Jaafarizedah, "State Estimation of Induction Motor Drives Using the Unscented Kalman Filter" 59 (59): 4207-4216, 2012

      5 S. Zaky, "Stability analysis of speed and stator resistance estimators for sensorless inductionmotor drives" 59 (59): 858-870, 2012

      6 Y. Oguz, "Speed estimation of vector controlled squirrel cage asynchronous motor with artificial neural networks" 52 (52): 675-686, 2011

      7 J. Guzinski, "Speed Sensorless Induction Motor Drive with Predictive Current Controller" 60 (60): 699-709, 2013

      8 V. I. Utkin, "Sliding Mode in Control and Optimization" Springer Verlag 1992

      9 M. Di Lella, "Semi-Top Technical Information"

      10 D. R. Wrobel, "Rotor design for sensorless position estimation in permanent magnet machines" 58 (58): 3815-3824, 2011

      11 K. Liu, "Online multi-parameter estimation of non-salient pole PM synchronous machines with temperature variation tracking" 58 (58): 1776-1788, 2011

      12 R. Munoz, "On-line dead-time compensation technique for open-loop PWM-VSI drives" 14 (14): 683-689, 1999

      13 H. W. Kim, "Nonlinearity estimation and compensation of PWM VSI for PMSM under resistance and flux linkage uncertainty" 14 (14): 589-601, 2006

      14 Z. Qiao, "New and Sliding-Mode Observer for Position Sensorless Control of Permanent-Magnet Synchronous Motor" 60 (60): 710-719, 2013

      15 Menshawi K. Menshawi, "Multistage Inverters Control Using Surface Hysteresis Comparators" 전력전자학회 13 (13): 59-69, 2013

      16 K. L. Z. Q. Zhu, "Influence of Nonideal Voltage Measurement on Parameter Estimation in Permanent-Magnet Synchronous Machines" 59 (59): 2438-2447, 2012

      17 K. D. Hoang, "Influence and compensation of inverter voltage drop in direct torque-controlled four-switch three-phase PM brushless AC drives" 26 (26): 2343-2357, 2011

      18 Blaabjerg, "Improved modulation techniques for PWM-VSI drives" 44 (44): 87-95, 1997

      19 D. Casadei, "Implementation of a direct torque control algorithm for induction motors based on discrete space vector modulation" 15 (15): 769-777, 2000

      20 T. Orlowska-Kowalska, "FPGA implementation of the multilayer neural network for the speed estimation of the two-mass drive system" 7 (7): 436-445, 2011

      21 S. Y. Kim, "Effective dead-time compensation using a simple vectorial disturbance estimator in PMSM drives" 57 (57): 1609-1614, 2010

      22 O. Chee-mun, "Dynamic simulation of electric machinery using MATLAB/SIMULINK" Prentice hall PTR 1998

      23 Mohamad N. Abdul Kadir, "Dual Vector Control Strategy for a Three-Stage Hybrid Cascaded Multilevel Inverter" 전력전자학회 10 (10): 155-164, 2010

      24 C. Lascu, "Direct torque control of sensorless induction motors : a sliding mode approach" 40 (40): 582-589, 2004

      25 Mahrous E. Ahmed, "Design and Implementation of a Multi Level Three-Phase Inverter with Less Switches and Low Output Voltage Distortion" 전력전자학회 9 (9): 593-603, 2009

      26 S. H. Hwang, "Dead time compensation method for voltage-fed PWM inverter" 25 (25): 1-10, 2010

      27 G. Wang, "DSP-Based Control of Sensorless IPMSM Drives for Wide-Speed-Range Operation" 60 (60): 720-727, 2013

      28 Z. Xu, "Comparison of a Sliding Observer and a Kalman Filter for Direct-Torque-Controlled IPM Synchronous Motor Drives" 59 (59): 4179-4188, 2012

      29 N. Urasaki, "An adaptive dead-time compensation strategy for voltage source inverter fed motor drives" 20 (20): 1150-1160, 2005

      30 H. B. Zhao, "An accurate approach of nonlinearity compensation for VSI inverter output voltage" 19 (19): 1029-1035, 2004

      31 M. A. Herran, "Adaptive dead-time compensation for grid-connected PWM inverters of single-stage PV systems" 28 (28): 2816-2825, 2013

      32 I. Boldea, "Active flux DTFC-SVM sensorless control of IPMSM" 24 (24): 314-322, 2009

      33 L. Baghli, "A stator flux oriented drive for an induction motor with extra(α, β)coils" 4 : 2522-2526, 1998

      34 S. Kumar, "A critical evaluation and experimental verification of Extended Kalman Filter, Unscented Kalman Filter and Neural State Filter for state estimation of three phase induction motor" 11 (11): 3199-3208, 2011

      35 M. L. Corradini, "A Quasi-Sliding Mode Approach for Robust Control and Speed Estimation of PM Synchronous Motors" 59 (59): 1096-1104, 2012

      36 H. Kim, "A High-Speed Sliding-Mode Observer for the Sensorless Speed Control of a PMSM" 58 (58): 4069-4077, 2011

      37 C. Lascu, "A Class of speed Sensorless Sliding-Mode Observers for High-Performance Induction Motor Drives" 56 (56): 3394-3403, 2009

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