Adaptive Sliding Mode Control of Steer-by-wire Rack System and Side slip angle Control = 적응형 슬라이딩 모드 제어를 이용한 스티어 바이 와이어 랙 시스템 및 사이드 슬립각 제어

김광일 2021년
논문상세정보
' Adaptive Sliding Mode Control of Steer-by-wire Rack System and Side slip angle Control = 적응형 슬라이딩 모드 제어를 이용한 스티어 바이 와이어 랙 시스템 및 사이드 슬립각 제어' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 응용 물리
  • Rack position tracking control
  • Side slip angle control
  • Side slip angle estimation
  • Steer-by-wire (SBW)
  • adaptive sliding-mode control
  • 랙 위치 제어
  • 스티어 바이 와이어 시스템
  • 적응형 슬라이딩 모드 제어
  • 파라미터 추정 기법
  • 횡 슬립각 감소 제어
  • 횡 슬립각 추정
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
830 0

0.0%

' Adaptive Sliding Mode Control of Steer-by-wire Rack System and Side slip angle Control = 적응형 슬라이딩 모드 제어를 이용한 스티어 바이 와이어 랙 시스템 및 사이드 슬립각 제어' 의 참고문헌

  • the limits : From lanekeeping to autonomous racing
    35 , 137-148
  • ZHANG, J., WANG, H., ZHENG, J., CAO, Z., MAN, Z., YU, M. & CHEN, L. J. I. T. O. V. T. 2020. Adaptive sliding mode-based lateral stability control of steer?by-wire vehicles with experimental validations.
  • Z. J. V. S. D.Chassis integrated control for active suspension , active front steering and direct yaw moment systems using hierarchical strategy
  • Z. J. I. T. O. I. E.Two-time-scale redesign for antilock braking systems of ground vehicles
    SUN , W.ZHANG , J . 66 , 4577-4586 [LIU2018]
  • Z. J. E. J. O. C. 2013 . Integrated vehicle dynamics control via coordination of active front steering and rear braking
  • Y. Tire-road forces estimation using extended Kalman filter and sideslip angle evaluation
    DAKHLALLAH , J.GLASER , S.MAMMAR , S.SEBSADJI 2008 American control conferenceIEEE , 4597-4602 [2008]
  • WANG, R., ZHANG, H. & WANG, J. J. I. T. O. C. S. T. 2013. Linear parameter?varying controller design for four-wheel independently actuated electric ground vehicles with active steering systems. 22, 1281-1296.
  • W.Sliding Mode Control for Steer-by-Wire Systems With AC Motors in Road Vehicles
    WANG , H.KONG , H. , MANZ. , TUAND. M.CAO , Z . IEEE Transactions on Industrial Electronics61 , 1596-1611 [SHEN2014]
  • The dynamic response of tyres to brake torque variations and road unevennesses
    P. W. A [1998]
  • TALVALA, K. L., KRITAYAKIRANA, K. & GERDES, J. C. J. A. R. I. C. 2011.
  • TAGAWA, Y., OGATA, H., MORITA, K., NAGAI, M. & MORI, H. J. V. S. D. 1996.
  • Sliding mode control and observation
    SHTESSEL , Y.EDWARDS , C.FRIDMAN , L.LEVANT , A Springer . SNIDER , J. M. J. R. I. , PITTSBURGH , PA , TECH . REP. CMU-RITR-09-08 2009 [2014]
  • Sliding mode control : theory and applications , Crc PressHandling capabilities of vehicles in emergencies using coordinated AFS and ARMC systems
    EDWARDS , C.SPURGEON , S. ELARABY , M. J. V. S. D.35 , 195-215 [19982001]
  • S.-H., J.-H. & HAN , C.-S. 2003 . The development of an advanced control method for the steer-by-wireTechnical Paper . PACEJKA
    OH , S.-W. , YUNS.-C. , CHAEH.-C.JANG to improve the vehicle maneuverability and stabilityH. 2005 . Tire and vehicle dynamics , Elsevier . PERRUQUETTI , W. & BARBOT , J.-P. 2002 . [,.]
  • S. J. V. S. D.Effects of integrated control of active four wheel steering and individual wheel torque on vehicle handling and stability-a comparison of alternative control strategies
    HORIUCHI , S.OKADA , K.NOHTOMI 33 , 680- 691 [1999]
  • S. J. V. S. D.An adaptive integrated algorithm for active front steering and direct yaw moment control based on direct Lyapunov method
    DING , N.TAHERI 48 , 1193-1213 [2010]
  • S. J. K. F. & NETWORKS , N.The unscented Kalman filter
  • S. Integrated chassis control system for improved vehicle dynamics
    SATO , S.INOUE , H.TABATA , M.INAGAKI SAE Conference Proceedings p [1993]
  • S. B. J. P. O. T. I. O. M. E. , PART D : JOURNAL OF AUTOMOBILE ENGINEERINGMPC for vehicle lateral stability via differential braking and active front steering considering practical aspects
    CHOI , M.CHOI 230 , 459-469 [2016]
  • Robust active steering system taking account of nonlinear dynamics
    25 , 668- 681
  • R. J. M. S. & PROCESSING
  • R. J. J. O. M. S. & TECHNOLOGY 2014 . Variable structure controller design for steer-by-wire system of a passenger car
    MOUSAVINEJAD , I. 28 , 3285-3299 [KAZEMI]
  • R. Differential evolution design of an IIR-filter
    Proceedings of IEEE international conference on evolutionary computationIEEE , 268-273 [1996]
  • Nested adaptive super-twisting sliding mode control design for a vehicle steer?by-wire system. 122, 658-672.
  • N. J. J. O. D. S. , MEASUREMENT , & CONTROLGain-scheduled vehicle handling stability control via integration of active front steering and suspension systems
  • Modification of vehicle handling characteristics via steer-by-wire
    YIH , P.GERDESJ. C. 2005a IEEE Transactions on Control Systems Technology13 , 965- 976
  • Modeling and control design for rotary crane system using MATLAB Simscape Toolbox
    ARVIN , R. , SOLIHINM. , HELTHAF. , TANR. H.AMMAR , A 2014 IEEE 5th Control and System Graduate Research ColloquiumIEEE , 170-175 [2014]
  • M. J. V. S. D.The perspectives of research for enhancing active safety based on advanced control technology
    NAGAI 45 , 413-431 [2007]
  • M. J. V. S. D.A study on adaptation of SBW parameters to individual driver ’ s steer characteristics for improved driver ? vehicle system performance
  • M. J. S. T.Design of 2-degree-of-freedom control system for active front-and-rear-wheel steering
  • M. A. M. Active front steering for steer-by-wire vehicle via composite nonlinear feedback control
    S. A.ZAMZURI , H. , MAZLANS. A.ARIFFM. H. M.NORDIN 2015 10th Asian Control Conference ( ASCC )IEEE , 1-6 [2015]
  • L. J. P. O. T. I. O. M. E. , PART D : JOURNAL OF AUTOMOBILE ENGINEERING 2020 . Adaptive estimations of tyre ? road friction coefficient and body ’ s sideslip angle based on strong tracking and interactive multiple model theories
  • KıRLı, A., CHEN, Y., OKWUDIRE, C. E. & ULSOY, A. G. J. I. T. O. V. T. 2019.
    KıRLı , A.CHEN , Y. , OKWUDIREC. E. ULSOY , A. G. J. I. T. O. V. T. [2019]
  • KIM, C. J., JANG, J. H., OH, S. K., LEE, J. Y., HAN, C. S. & HEDRICK, J. K. 2008.
  • K. J. V. S. D.An investigation into unified chassis control scheme for optimised vehicle stability and manoeuvrability
  • K. J. V. S. D.Active steering systems based on model reference adaptive nonlinear control
  • J. Y. J. I. T. O. C. S. T.Development and experimental evaluation of a slip angle estimator for vehicle stability control
  • J. J. V. S. D.Sideslip angle estimation based on input ? output linearisation with tire ?
    GAO , X.YU , Z.NEUBECK , J .WIEDEMANN road friction adaptation48 , 217-234 [2010]
  • J. J. I. T. O. V. T. 2016 . Electronic stability control based on motor driving and braking torque distribution for a four in-wheel motor drive electric vehicle
    ZHAI , L.SUN , T.WANG 65 , 4726-4739
  • J. C. J. I. T. O. C. S. T. 2005b . Modification of vehicle handling characteristics via steer-by-wire
    YIH , P.GERDES 13 , 965-976
  • Implement of Handling and Stability Road Test of Passenger Vehicle for ISO Standards
    GUOR. Q.YUAN , L.XIE , J . Z . Applied Mechanics and MaterialsTrans Tech Publ , 1869-1874 [2014]
  • I. T. O. I. E.
    YAMAGUCHI , Y .MURAKAMI , T. J. 56 , 1585-1594 [2008]
  • H.Adaptive Sliding-Mode Control for Nonlinear Active Suspension Vehicle Systems Using T ? S Fuzzy Approach
    LI , H.YU , J.HILTON , C. IEEE Transactions on Industrial Electronics , 60 , 3328-3338 [LIU2013]
  • H. J. I. T. O. I. E.Robust control of a vehicle steer-by-wire system using adaptive sliding mode
  • H. E. J. V. S. D.Robust estimation of road friction coefficient using lateral and longitudinal vehicle dynamics
    AHN , C.PENG , H.TSENG 50 , 961- 985 [2012]
  • G. R. A Repeatability Examination of NHTSA ’ s Proposed FMVSS 126 ESC Evaluation Method and Metrics
    BOYDK. J.CARRIERE , J . A .LUKIANOV 20th International Technical Conference on the Enhanced Safety of Vehicles ( ESV ) National Highway Traffic Safety Administration [2007]
  • G. J. S. C. T. S.Path planning and stability control of collision avoidance system based on active front steering
    WNAG , C.ZHAO , W.XU , Z .ZHOU 60 , 1231-1243 [2017]
  • F. J. V. S. D.Integrated vehicle chassis control based on direct yaw moment , active steering and active stabiliser
    LI , D.DU , S.YU 46 , 341-351 [2008]
  • Estimation of lateral tire ? road forces and sideslip angle for electric vehicles using interacting multiple model filter approach
  • Disturbance observer-based control : methods and applications
  • Development of a control algorithm for a rack-actuating steer-by-wire system using road information feedback
    Proceedings of the Institution of Mechanical Engineers , Part D : Journal of Automobile Engineering , 222 , 1559-1571
  • D.-C. J. J. O. M. & ENGINEERING , E.Simulation of steering by wire controller based on improved H ∞ algorithm
  • D. J. V. S. D.UniTire : unified tire model for vehicle dynamic simulation
    GUO , K.LU 45 , 79-99 [2007]
  • D. J. V. S. D.Experimental evaluation of observers for tire ? road forces
    BAFFET , G.CHARARA , A.LECHNER , D.THOMAS sideslip angle and wheel cornering stiffness46 , 501-520 [2008]
  • D. J. V. S. D. 1979 . Analytical tire models for dynamic vehicle simulation
  • CHUNG, T. & YI, K. J. I. T. O. C. S. T. 2006. Design and evaluation of side slip angle?based vehicle stability control scheme on a virtual test track. 14, 224-234.
  • CHEN, W.-H., YANG, J., GUO, L. & LI, S. J. I. T. O. I. E. 2015. Disturbance-observer?based control and related methods—An overview. 63, 1083-1095.
  • CHEN, M.-S., HWANG, Y.-R. & TOMIZUKA, M. J. I. T. O. A. C. 2002. A state?dependent boundary layer design for sliding mode control. 47, 1677-1681.
  • C.-S. J. J. I. J. S. C. M. S. , MACHINE ELEMENTS & MANUFACTURING 2004 . The design of a controller for the steer-by-wire system
  • C. L. J. S. T.Tire modeling for low-speed and high-speed calculations
    J. E.CLOVER 474-483 [1995]
  • C. E. P.Estimation of the tire slip angle under various road conditions without tire ? road information for vehicle stability control
    JOA , E.YI , K.HYUN , Y. J. 86 , 129-143 [2019]
  • Backup Steering Strategy for Steer-by-Wire Autonomous Vehicles With Vehicle Stability Control
    68 , 7319-7328
  • Application of novel lateral tire force sensors to vehicle parameter estimation of electric vehicles
    K. J. S. 15 , 28385-28401 [2015]
  • Adaptive sliding-mode control for nonlinearsystems with uncertain parameters
  • Adaptive sliding-mode control for nonlinear systems with uncertain parameters
    HUANGY. J. , KUOT. C.CHANG , S. H. 2008b IEEE Trans Syst Man Cybern B Cybern , 38 , 534-9
  • Adaptive Sliding Mode Control of Steer-by-wire Rack System and Side slip angle Control = 적응형 슬라이딩 모드 제어를 이용한 스티어 바이 와이어 랙 시스템 및 사이드 슬립각 제어
  • Active front wheel steering model and controller for integrated dynamics control systems
    SONG , J. J. I. J. O . A. T.17 , 265-272 [2016]
  • A. T.Unified chassis control with electronic stability control and active front steering for under-steer prevention
    S. J. I. J. O 16 , 775-782 [2015]
  • A. T.Robust control for four-wheel-independent-steering electric vehicle with steer-by-wire system
  • A. T.Nonlinear adaptive sliding mode control for vehicle handling improvement via steer-by-wire
  • A. T. O. M.Advanced motion control of electric vehicles based on robust lateral tire force control via active front steering
    NAM , K.FUJIMOTO , H.Y. J. I 19 , 289-299 [2012]
  • A. T. O. M. 2004 . Disturbance observer based control for nonlinear systems
    CHENW.-H. J. I 9 , 706-710
  • A. J. J. I. J. O. O. E. 1990 . Adaptive sliding mode control of autonomous underwater vehicles in the dive plane
  • A. J. I. T. O. C. S. T. 2012 . Vehicle yaw stability control by coordinated active front steering and differential braking in the tire sideslip angles domain
  • A. I. M. E. 2018b . A novel adaptive sliding mode control approach for electric vehicle direct yaw-moment control
  • A variable structure extended Kalman filter for vehicle sideslip angle estimation on a low friction road
  • A novel adaptive sliding mode control approach for electric vehicle direct yaw-moment control
    FU , C.HOSEINNEZHAD , R.LI , K.HUM. 2018a Advances in Mechanical Engineering , 10
  • A nonlinear tracking controller for a haptic interface steer-by-wire systems
    SEFLUR , P.DAWSON , D.CHEN , J .WAGNER , J . Proceedings of the 41st IEEE Conference on Decision and Control , 2002.IEEE , 3112-3117 [2002]
  • A New Intelligent Technology of Steering-by-Wire System by Variable Structure Control with Sliding Mode
    ZOU , F.SONG , D.LI , Q .YUAN , B . 2009 International Joint Conference on Artificial Intelligence [2009]
  • A Model-Free Control Strategy for Vehicle Lateral Stability With Adaptive Dynamic Programming
    SUN , W.WANG , X .ZHANG , C. IEEE Transactions on Industrial Electronics67 , 10693-10701 [2020]
  • , M. Required friction utilization for friction estimation on wet asphalt , an experimental study . Dynamics of Vehicles on Roads and Tracks Vol 1 : Proceedings of the 25th International Symposium on Dynamics of Vehicles on Roads and Tracks ( IAVSD 2017 ) , 14-18
    , A. ,, F. & , Rockhampton , Queensland ,. CRC Press , [August,]