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      KCI등재 SCIE SCOPUS

      Research on Grey Predictive Control of PMSM Based on Reduced-order Luenberger Observer

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      https://www.riss.kr/link?id=A107808978

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      다국어 초록 (Multilingual Abstract)

      To further improve the dynamic and anti-interference performance of permanent magnet synchronous motor (PMSM) control system, a dual closed loop model predictive control (MPC) strategy combining with grey prediction and reduced-order Luenberger observ...

      To further improve the dynamic and anti-interference performance of permanent magnet synchronous motor (PMSM) control system, a dual closed loop model predictive control (MPC) strategy combining with grey prediction and reduced-order Luenberger observer is proposed in this paper for speed and current control. To be specifi c, fi rstly, the dual closed loop MPC strategy is introduced based on the mathematical model of PMSM, that is, the model predictive controller is used for the outer loop of speed, and the deadbeat predictive controller for the inner loop of current. Secondly, considering the grey prediction method can establish grey model and whiten the system grey quantity to some extent, it is used in the PMSM control system to improve the dynamic performance. Finally, to solve the problem that the motor is easy to be aff ected by disturbances, a reduced-order Luenberger observer is designed to combine with the model predictive controller to improve the system anti-interference performance. The simulation results show that the dual MPC strategy based on grey prediction makes the system more stable and dynamic response faster, while the dual MPC strategy combining with the grey prediction and the reduced-order Luenberger observer makes the system more resistant to load disturbance.

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      참고문헌 (Reference)

      1 Deng J, "The grey control system" 10 (10): 9-18, 1993

      2 Pan H, "The closed-loop BMI system design based on the improved SJIT model and the network of Izhikevich neurons" 401 : 271-280, 2020

      3 Fei Q, "Speed ripple minimization of permanent magnet synchronous motor based on model predictive and iterative learning controls" 7 : 31791-31800, 2019

      4 Zhang Y, "Simulation of deadbeat predictive current control for permanent magnet synchronous motor based on disturbance observer" 020 (020): 1-5, 2019

      5 Wu F, "Sampling period online adjusting-based hysteresis current control without band with constant switching frequency" 62 (62): 270-277, 2015

      6 Wang P, "Robust RHC for wheeled vehicles with bounded disturbances" 29 (29): 2063-2081, 2019

      7 Kakosimos PE, "Predictive speed control with short prediction horizon for permanent magnet synchronous motor drives" 33 (33): 2740-2750, 2018

      8 Tu W, "Predictive cascaded speed and current control for PMSM drives with multi-timescale optimization" 34 (34): 11046-11061, 2019

      9 Tu W, "Predictive cascaded speed and current control for PMSM drives with multi-time scale optimization" 34 (34): 11046-11061, 2019

      10 Jianchen Hu, "Output feedback robust MPC for linear systems with norm-bounded model uncertainty and disturbance" Elsevier BV 108 : 108489-, 2019

      1 Deng J, "The grey control system" 10 (10): 9-18, 1993

      2 Pan H, "The closed-loop BMI system design based on the improved SJIT model and the network of Izhikevich neurons" 401 : 271-280, 2020

      3 Fei Q, "Speed ripple minimization of permanent magnet synchronous motor based on model predictive and iterative learning controls" 7 : 31791-31800, 2019

      4 Zhang Y, "Simulation of deadbeat predictive current control for permanent magnet synchronous motor based on disturbance observer" 020 (020): 1-5, 2019

      5 Wu F, "Sampling period online adjusting-based hysteresis current control without band with constant switching frequency" 62 (62): 270-277, 2015

      6 Wang P, "Robust RHC for wheeled vehicles with bounded disturbances" 29 (29): 2063-2081, 2019

      7 Kakosimos PE, "Predictive speed control with short prediction horizon for permanent magnet synchronous motor drives" 33 (33): 2740-2750, 2018

      8 Tu W, "Predictive cascaded speed and current control for PMSM drives with multi-timescale optimization" 34 (34): 11046-11061, 2019

      9 Tu W, "Predictive cascaded speed and current control for PMSM drives with multi-time scale optimization" 34 (34): 11046-11061, 2019

      10 Jianchen Hu, "Output feedback robust MPC for linear systems with norm-bounded model uncertainty and disturbance" Elsevier BV 108 : 108489-, 2019

      11 Zhang X, "Nonlinear speed control for PMSM system using sliding-mode control and disturbance compensation techniques" 28 (28): 1358-1365, 2013

      12 Yanping Xu, "Multi‑step model predictive current control of permanent‑magnet synchronous motor" 전력전자학회 20 (20): 176-187, 2020

      13 Zhang L, "Model predictive current control for PMSM drives with parameter robustness improvement" 34 (34): 1645-1657, 2019

      14 Yuan X, "Improved model predictive current control for SPMSM drives with parameter mismatch" 67 (67): 852-862, 2019

      15 Zhang R, "Grey control strategy of predictive current for pmsm" 2386-2390, 2016

      16 Zhang Y, "Generalized multiple-vectorbased model predictive control for PMSM drives" 65 (65): 9356-9366, 2018

      17 Salam WS, "Fuzzy-pi control for speed of PMSM drive system" 6 (6): 31-35, 2019

      18 Su X, "Fuzzy control of nonlinear electromagnetic suspension systems" 24 (24): 328-335, 2014

      19 Tu W, "Finite-controlset model predictive current control for pmsm using grey prediction" 1-7, 2016

      20 Hu J, "Dynamic output feedback predictive control with one free control move for Takagi–Sugeno model with bounded disturbance" 27 (27): 462-473, 2018

      21 Wei X, "Dynamic loss minimization of fi nite control set-model predictive torque control for electric drive system" 31 (31): 849-860, 2016

      22 Zhang X, "Double vectors model predictive torque control without weighting factor based on voltage tracking error" 33 (33): 2368-2380, 2017

      23 Zhang X, "Disturbance-deadbeat inductance observer-based current predictive control for surfacemounted permanent magnet synchronous motors drives" 13 (13): 1172-1180, 2020

      24 Wang P, "Deadbeat predictive current control for PMSM based on improved Luenberger observer" 2373-2377, 2020

      25 Pan H, "An adaptive decoder design based on the receding horizon optimization in BMI system" 14 (14): 281-290, 2020

      26 Liang D, "Adaptive second-order sliding-mode observer for PMSM sensorless control considering VSI nonlinearity" 33 (33): 8994-9004, 2018

      27 Zhang G, "Adaline-network-based PLL for position sensorless interior permanent magnet synchronous motor drives" 31 (31): 1450-1460, 2015

      28 Hongguang Pan, "A universal closed-loop brain–machine interface framework design and its application to a joint prosthesis" Springer Science and Business Media LLC 33 (33): 5471-5481, 2021

      29 Tarczewski T, "A state-space approach for control of NPC type 3-level sine wave inverter used in FOC PMSM drive" 62 (62): 439-448, 2014

      30 Zhou D, "A robust prognostic indicator for renewable energy technologies : a novel error correction grey prediction model" 66 (66): 9312-9325, 2019

      31 Hongguang Pan, "A closed-loop brain–machine interface framework design for motor rehabilitation" Elsevier BV 58 : 101877-, 2020

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      학술지등록 한글명 : Journal of Electrical Engineering & Technology(JEET)
      외국어명 : Journal of Electrical Engineering & Technology
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 학술지 통합 (기타) KCI등재
      2006-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.45 0.21 0.39
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.37 0.34 0.372 0.04
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