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      KCI등재 SCIE SCOPUS

      FAULT DIAGNOSIS AND TOLERANCE ON RELIABILITY OF AUTOMOTIVE MOTOR CONTROL SYSTEM: A REVIEW

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      https://www.riss.kr/link?id=A108204360

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      다국어 초록 (Multilingual Abstract)

      This paper reviews fault diagnosis and tolerant techniques for improving reliability of automotive motor control systems which consist of an inverter, permanent magnet synchronous motor and sensors. In order to improve reliability of system, the fault...

      This paper reviews fault diagnosis and tolerant techniques for improving reliability of automotive motor control systems which consist of an inverter, permanent magnet synchronous motor and sensors. In order to improve reliability of system, the fault diagnosis is the first step once a fault occurs. An accurate and timely detection and protection can prevent fault propagations and catastrophic consequences. The fault tolerant operation is the next counter measure, which is based on redundancy design. In this paper, statistical survey results on occurrence and failure rate of common fault modes are summarized for inverter, electric motor and sensors, respectively. And then, fault diagnosis and tolerant methods for the main fault modes are discussed based on the researches and literatures which are adequate for automotive applications.
      Finally, a reliability assessment methodology according to fault mitigation and tolerant concepts is introduced and discussed.

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      참고문헌 (Reference)

      1 Strangas, E. G., "The effect of failure prognosis and mitigation on the reliability of permanent-magnet AC motor drives" 60 (60): 3519-3528, 2013

      2 An, Q., "Switching function model-based fast-diagnostic method of openswitch faults in inverters without sensors" 26 (26): 119-126, 2011

      3 Song, Y., "Survey on reliability of power electronic systems" 28 (28): 591-604, 2013

      4 Zhang, W., "Survey on fault-tolerant techniques for power electronic converters" 29 (29): 6319-6331, 2014

      5 Chakraborty, C., "Speed and current sensor fault detection and isolation technique for induction motor drive using axes transformation" 62 (62): 1943-1954, 2015

      6 Qi, Y., "Severity estimation of interturn short circuit fault for PMSM" 66 (66): 7260-7269, 2019

      7 Sul, S., "Sensorless control of IPMSM for last 10 years and next 5 years" 1 (1): 91-99, 2017

      8 Murr, G. E., "Reliability assessment of fault tolerant permanent magnet AC drives" 2015

      9 Xu, S., "Reliability analysis on power converter of switched reluctance machine system under different control strategies" 66 (66): 6570-6580, 2019

      10 Li, W., "Reliability analysis and evaluation for flux-switching permanent magnet machine" 66 (66): 1760-1769, 2019

      1 Strangas, E. G., "The effect of failure prognosis and mitigation on the reliability of permanent-magnet AC motor drives" 60 (60): 3519-3528, 2013

      2 An, Q., "Switching function model-based fast-diagnostic method of openswitch faults in inverters without sensors" 26 (26): 119-126, 2011

      3 Song, Y., "Survey on reliability of power electronic systems" 28 (28): 591-604, 2013

      4 Zhang, W., "Survey on fault-tolerant techniques for power electronic converters" 29 (29): 6319-6331, 2014

      5 Chakraborty, C., "Speed and current sensor fault detection and isolation technique for induction motor drive using axes transformation" 62 (62): 1943-1954, 2015

      6 Qi, Y., "Severity estimation of interturn short circuit fault for PMSM" 66 (66): 7260-7269, 2019

      7 Sul, S., "Sensorless control of IPMSM for last 10 years and next 5 years" 1 (1): 91-99, 2017

      8 Murr, G. E., "Reliability assessment of fault tolerant permanent magnet AC drives" 2015

      9 Xu, S., "Reliability analysis on power converter of switched reluctance machine system under different control strategies" 66 (66): 6570-6580, 2019

      10 Li, W., "Reliability analysis and evaluation for flux-switching permanent magnet machine" 66 (66): 1760-1769, 2019

      11 Oh, H., "Physics-of-failure, condition monitoring, and prognostics of insulated gate bipolar transistor modules:A review" 30 (30): 2413-2426, 2015

      12 Zhao, W., "Overview of permanent-magnet fault-tolerant machines: Topology and design" 2 (2): 51-64, 2018

      13 Freire, N. M. A., "Open-circuit fault diagnosis in PMSG drives for wind turbine applications" 60 (60): 3957-3967, 2013

      14 Yang, S. C., "Online turn fault detection of interior permanent-magnet machines using the pulsating-type voltage injection" 52 (52): 2340-2349, 2016

      15 Hang, J., "Online interturn fault diagnosis of permanent magnet synchronous machine using zero-sequence components" 30 (30): 6731-6741, 2015

      16 Salehifar, M., "Observer-based open transistor fault diagnosis and fault-tolerant control of five-phase permanent magnet motor drive for application in electric vehicles" 8 (8): 76-87, 2015

      17 Wilson, S. D., "Methods of resistance estimation in permanent magnet synchronous motors for real-time thermal management" 25 (25): 698-707, 2010

      18 Bazzi, A. M., "Markov reliability modeling for induction motor drives under field-oriented control" 27 (27): 534-546, 2012

      19 Y. LUO ; J. LUO ; Z. QIN, "MODEL-INDEPENDENT SELF-TUNING FAULT-TOLERANT CONTROL METHOD FOR 4WID EV" 한국자동차공학회 17 (17): 1091-1100, 2016

      20 Donato, G. D., "Low-cost, high-resolution, faultrobust position and speed estimation for PMSM drives operating in safety-critical systems" 34 (34): 550-564, 2019

      21 Zafarani, M., "Interturn short-circuit faults in permanent magnet synchronous machines: An extended review and comprehensive analysis" 6 (6): 2173-2191, 2018

      22 Du, B., "Interturn fault diagnosis strategy for interior permanent-magnet synchronous motor of electric vehicles based on digital signal processor" 63 (63): 1694-1706, 2016

      23 Urresty, J., "Influence of the stator windings configuration in the currents and zero-sequence voltage harmonics in permanent magnet synchronous motors with demagnetization faults" 49 (49): 4885-4893, 2013

      24 Berriri, H., "Field programmable gate arraybased fault-tolerant hysteresis current control for AC machine drives" 6 (6): 181-189, 2012

      25 Choi, S., "Fault diagnosis techniques for permanent magnet AC machine and drives —A review of current state of the art" 4 (4): 444-463, 2018

      26 L. HE ; G. Y. CHEN ; H. Y. ZHENG, "FAULT TOLERANT CONTROL METHOD OF DUAL STEERING ACTUATOR MOTORS FOR STEER-BY-WIRE SYSTEM" 한국자동차공학회 16 (16): 977-987, 2015

      27 Berriri, H., "Easy and fast sensor fault detection and isolation algorithm for electrical drives" 27 (27): 490-499, 2012

      28 Goktas, T., "Discernment of broken magnet and static eccentricity faults in permanent magnet synchronous motors" 31 (31): 578-587, 2016

      29 Ebrahimi, B. M., "Diagnosis and performance analysis of threephase permanent magnet synchronous motors with static, dynamic and mixed eccentricity" 4 (4): 53-66, 2010

      30 Park, J., "Detection of inter-turn and dynamic eccentricity faults using stator current frequency pattern in IPM-type BLDC motors" 63 (63): 1771-1780, 2016

      31 Hong, J., "Detection of airgap eccentricity for permanent magnet synchronous motors based on the d-axis inductance" 27 (27): 2605-2612, 2012

      32 Najafabadi, T. A., "Detection and isolation of speed-, DC-link voltage-, and current-sensor faults based on an adaptive observer in induction-motor drives" 58 (58): 1662-1672, 2011

      33 Choi, C., "Design and evaluation of voltage measurement-based sectoral diagnosis method for inverter open switch faults of permanent magnet synchronous motor drives" 6 (6): 526-532, 2012

      34 Faiz, J., "Demagnetization modeling and fault diagnosing techniques in permanent magnet machines under stationary and nonstationary conditions: An overview" 53 (53): 2772-2785, 2017

      35 Wang, G., "Current sensor fault-tolerant control strategy for encoderless PMSM drives based on single sliding mode observer" 6 (6): 679-689, 2020

      36 Yang, S., "Condition monitoring for device reliability in power electronic converters: A review" 25 (25): 2734-2752, 2010

      37 Faiz, J., "Comprehensive review on inter-turn fault indexes in permanent magnet motors" 11 (11): 142-156, 2017

      38 Bazurto, A. J., "Causes and failures classification of industrial electric motor" 2016

      39 J. H. LEE ; H. T. MOON ; 유지윤, "CURRENT SENSORLESS DRIVE METHOD FOR ELECTRIC POWER STEERING" 한국자동차공학회 13 (13): 1141-1147, 2012

      40 Zafarani, M., "An investigation of motor topology impacts on magnet defect fault signatures" 64 (64): 32-42, 2017

      41 Yang, S., "An industry-based survey of reliability in power electronic converters" 47 (47): 1441-1451, 2011

      42 Qi, Y., "Advanced severity monitoring of interturn short circuit faults in PMSMs" 5 (5): 395-404, 2019

      43 Zhang, G., "Active disturbance rejection control strategy for signal injection-based sensorless IPMSM drives" 4 (4): 330-339, 2018

      44 Munim, W. N. W. A., "A unified analysis of the fault tolerance capability in six-phase induction motor drives" 32 (32): 7824-7836, 2017

      45 Wu, C., "A signal-based fault detection and tolerance control method of current sensor for PMSM drive" 65 (65): 9646-9657, 2018

      46 Foo, G. H. B., "A sensor fault detection and isolation method in interior permanent-magnet synchronous motor drives based on an extended kalman filter" 60 (60): 3485-3495, 2013

      47 Salem, A., "A review on multiphase drives for automotive traction applications" 5 (5): 1329-1348, 2019

      48 Diab, M. S., "A nine-switch-converter-based integrated motor drive and battery charger system for evs using symmetrical six-phase machines" 63 (63): 5326-5335, 2016

      49 Estima, J. O., "A new approach for real-time multiple open-circuit fault diagnosis in voltage-source inverters" 47 (47): 2487-2494, 2011

      50 Freire, N. M. A., "A new approach for current sensor fault diagnosis in PMSG drives for wind energy conversion systems" 50 (50): 1206-1214, 2014

      51 Estima, J. O., "A new algorithm for real-time multiple open-circuit fault diagnosis in voltage-fed PWM motor drives by the reference current errors" 60 (60): 3496-3505, 2013

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      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 등재학술지 선정 (등재후보2차) KCI등재
      2005-06-10 학술지명변경 한글명 : 한국자동차공학회 영문논문집 -> International Journal of Automotive Technology
      외국어명 : International Journal of Automotive Tech -> International Journal of Automotive Technology
      KCI등재후보
      2005-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2004-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.14 0.53 0.85
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