Robust finite-time tracking control for nonlinear suspension systems via disturbance compensation
暂无分享,去创建一个
[1] Menghua Zhang,et al. Error tracking control for underactuated overhead cranes against arbitrary initial payload swing angles , 2017 .
[2] Arie Levant,et al. Homogeneity approach to high-order sliding mode design , 2005, Autom..
[3] S. Bhat,et al. Continuous finite-time stabilization of the translational and rotational double integrators , 1998, IEEE Trans. Autom. Control..
[4] Zongxia Jiao,et al. Adaptive Control of Hydraulic Actuators With LuGre Model-Based Friction Compensation , 2015, IEEE Transactions on Industrial Electronics.
[5] Rongrong Wang,et al. Robust fault-tolerant H ∞ control of active suspension systems with finite-frequency constraint , 2015 .
[6] Xinghuo Yu,et al. Chattering free full-order sliding-mode control , 2014, Autom..
[7] V. Haimo. Finite time controllers , 1986 .
[8] Arie Levant,et al. Principles of 2-sliding mode design , 2007, Autom..
[9] Franck Plestan,et al. Higher order sliding mode control based on integral sliding mode , 2007, Autom..
[10] Asif Chalanga,et al. A New Algorithm for Continuous Sliding Mode Control With Implementation to Industrial Emulator Setup , 2015, IEEE/ASME Transactions on Mechatronics.
[11] Jie Huang,et al. On an output feedback finite-time stabilization problem , 2001, IEEE Trans. Autom. Control..
[12] Huijun Gao,et al. Filter-Based Adaptive Vibration Control for Active Vehicle Suspensions With Electrohydraulic Actuators , 2016, IEEE Transactions on Vehicular Technology.
[13] Y. ORLOV,et al. Finite Time Stability and Robust Control Synthesis of Uncertain Switched Systems , 2004, SIAM J. Control. Optim..
[14] Shen Yin,et al. Adaptive Fuzzy Control of Strict-Feedback Nonlinear Time-Delay Systems With Unmodeled Dynamics , 2016, IEEE Transactions on Cybernetics.
[15] Fuad E. Alsaadi,et al. Nonlinear tracking control based on extended state observer for vehicle active suspensions with performance constraints , 2015 .
[16] Jaime A. Moreno,et al. A Lyapunov approach to output feedback control using second-order sliding modes , 2012, IMA J. Math. Control. Inf..
[17] Xingjian Jing,et al. Frequency-Domain Analysis and Design of Linear Feedback of Nonlinear Systems and Applications in Vehicle Suspensions , 2016, IEEE/ASME Transactions on Mechatronics.
[18] M. Kawski. GEOMETRIC HOMOGENEITY AND STABILIZATION , 1995 .
[19] Huijun Gao,et al. Disturbance Observer-Based Adaptive Tracking Control With Actuator Saturation and Its Application , 2016, IEEE Transactions on Automation Science and Engineering.
[20] Yiguang Hong,et al. Finite-time stabilization and stabilizability of a class of controllable systems , 2002, Syst. Control. Lett..
[21] Shen Yin,et al. Performance Monitoring for Vehicle Suspension System via Fuzzy Positivistic C-Means Clustering Based on Accelerometer Measurements , 2015, IEEE/ASME Transactions on Mechatronics.
[22] Jaime A. Moreno,et al. Strict Lyapunov Functions for the Super-Twisting Algorithm , 2012, IEEE Transactions on Automatic Control.
[23] Dennis S. Bernstein,et al. Geometric homogeneity with applications to finite-time stability , 2005, Math. Control. Signals Syst..
[24] Huijun Gao,et al. Adaptive Backstepping Control for Active Suspension Systems With Hard Constraints , 2013, IEEE/ASME Transactions on Mechatronics.
[25] Ya-Jun Pan,et al. Integrated adaptive robust control for multilateral teleoperation systems under arbitrary time delays , 2016 .
[26] Zongxia Jiao,et al. A Practical Nonlinear Adaptive Control of Hydraulic Servomechanisms With Periodic-Like Disturbances , 2015, IEEE/ASME Transactions on Mechatronics.
[27] James Lam,et al. Multi-objective control of vehicle active suspension systems via load-dependent controllers , 2006 .
[28] Menghua Zhang,et al. Adaptive tracking control for double-pendulum overhead cranes subject to tracking error limitation, parametric uncertainties and external disturbances , 2016 .
[29] Huijun Gao,et al. Finite Frequency $H_{\infty }$ Control for Vehicle Active Suspension Systems , 2011, IEEE Transactions on Control Systems Technology.
[30] Huijun Gao,et al. Sampled-Data Control for Relative Position Holding of Spacecraft Rendezvous With Thrust Nonlinearity , 2012, IEEE Transactions on Industrial Electronics.
[31] Huijun Gao,et al. Finite-Time Stabilization for Vehicle Active Suspension Systems With Hard Constraints , 2015, IEEE Transactions on Intelligent Transportation Systems.
[32] Wei Xing Zheng,et al. On Extended Dissipativity of Discrete-Time Neural Networks With Time Delay , 2015, IEEE Transactions on Neural Networks and Learning Systems.
[33] A. Levant. Robust exact differentiation via sliding mode technique , 1998 .
[34] Bin Yao,et al. Accurate Motion Control of Linear Motors With Adaptive Robust Compensation of Nonlinear Electromagnetic Field Effect , 2013, IEEE/ASME Transactions on Mechatronics.
[35] Guanghong Yang,et al. Optimal partitioning method for stability analysis of continuous/discrete delay systems , 2015 .
[36] Huijun Gao,et al. Saturated Adaptive Robust Control for Active Suspension Systems , 2013, IEEE Transactions on Industrial Electronics.
[37] Dennis S. Bernstein,et al. Finite-Time Stability of Continuous Autonomous Systems , 2000, SIAM J. Control. Optim..
[38] E. Moulay,et al. Finite time stability of nonlinear systems , 2003, 42nd IEEE International Conference on Decision and Control (IEEE Cat. No.03CH37475).
[39] Huijun Gao,et al. Vibration Isolation for Active Suspensions With Performance Constraints and Actuator Saturation , 2015, IEEE/ASME Transactions on Mechatronics.
[40] Xingjian Jing,et al. An SIMO Nonlinear System Approach to Analysis and Design of Vehicle Suspensions , 2015, IEEE/ASME Transactions on Mechatronics.
[41] Hak-Keung Lam,et al. Fuzzy Sampled-Data Control for Uncertain Vehicle Suspension Systems , 2014, IEEE Transactions on Cybernetics.