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Donghong Ning
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Takagi–Sugeno fuzzy control for semi-active vehicle suspension with a magnetorheological damper and experimental validation
X Tang, H Du, S Sun, D Ning, Z Xing, W Li
IEEE/ASME transactions on mechatronics 22 (1), 291-300, 2016
1472016
A semi-active suspension using a magnetorheological damper with nonlinear negative-stiffness component
J Yang, D Ning, SS Sun, J Zheng, H Lu, M Nakano, S Zhang, H Du, WH Li
Mechanical Systems and Signal Processing 147, 107071, 2021
1212021
An active seat suspension design for vibration control of heavy-duty vehicles
D Ning, S Sun, J Zhang, H Du, W Li, X Wang
Journal of low frequency noise, vibration and active control 35 (4), 264-278, 2016
1092016
A seat suspension with a rotary magnetorheological damper for heavy duty vehicles
SS Sun, DH Ning, J Yang, H Du, SW Zhang, WH Li
Smart Materials and Structures 25 (10), 105032, 2016
1082016
Disturbance observer based Takagi-Sugeno fuzzy control for an active seat suspension
D Ning, S Sun, F Zhang, H Du, W Li, B Zhang
Mechanical Systems and Signal Processing 93, 515-530, 2017
1032017
Active control of an innovative seat suspension system with acceleration measurement based friction estimation
D Ning, S Sun, H Li, H Du, W Li
Journal of Sound and Vibration 384, 28-44, 2016
862016
A variable resonance magnetorheological-fluid-based pendulum tuned mass damper for seismic vibration suppression
MD Christie, S Sun, L Deng, DH Ning, H Du, SW Zhang, WH Li
Mechanical Systems and Signal Processing 116, 530-544, 2019
822019
Vibration control of an energy regenerative seat suspension with variable external resistance
D Ning, S Sun, H Du, W Li, N Zhang
Mechanical Systems and Signal Processing 106, 94-113, 2018
742018
An energy saving variable damping seat suspension system with regeneration capability
D Ning, H Du, S Sun, W Li, W Li
IEEE Transactions on Industrial Electronics 65 (10), 8080-8091, 2018
722018
A new generation of magnetorheological vehicle suspension system with tunable stiffness and damping characteristics
S Sun, X Tang, J Yang, D Ning, H Du, S Zhang, W Li
IEEE Transactions on Industrial Informatics 15 (8), 4696-4708, 2019
622019
An electromagnetic variable inertance device for seat suspension vibration control
D Ning, S Sun, H Du, W Li, N Zhang, M Zheng, L Luo
Mechanical systems and signal processing 133, 106259, 2019
552019
Vibration reduction of seat suspension using observer based terminal sliding mode control with acceleration data fusion
D Ning, S Sun, L Wei, B Zhang, H Du, W Li
Mechatronics 44, 71-83, 2017
482017
Control of a multiple-DOF vehicle seat suspension with roll and vertical vibration
D Ning, S Sun, H Du, W Li, W Li
Journal of Sound and Vibration 435, 170-191, 2018
412018
An electromagnetic variable stiffness device for semi-active seat suspension vibration control
D Ning, H Du, S Sun, M Zheng, W Li, N Zhang, Z Jia
IEEE Transactions on Industrial Electronics, 2019
382019
Investigation of a seat suspension installed with compact variable stiffness and damping rotary magnetorheological dampers
L Deng, S Sun, M Christie, D Ning, S Jin, H Du, S Zhang, W Li
Mechanical Systems and Signal Processing 171, 108802, 2022
352022
Controllable electrically interconnected suspension system for improving vehicle vibration performance
D Ning, H Du, N Zhang, S Sun, W Li
IEEE/ASME Transactions on Mechatronics, 2020
352020
Event-triggered H∞ control for active seat suspension systems based on relaxed conditions for stability
W Li, H Du, D Ning, W Li, S Sun, J Wei
Mechanical Systems and Signal Processing 149, 107210, 2021
332021
A novel negative stiffness magnetic spring design for vehicle seat suspension system
L Tu, D Ning, S Sun, W Li, H Huang, M Dong, H Du
Mechatronics 68, 102370, 2020
322020
Integrated active and semi-active control for seat suspension of a heavy duty vehicle
D Ning, S Sun, H Du, W Li
Journal of intelligent material systems and structures 29 (1), 91-100, 2018
322018
A rotary variable admittance device and its application in vehicle seat suspension vibration control
D Ning, S Sun, J Yu, M Zheng, H Du, N Zhang, W Li
Journal of the Franklin Institute 356 (14), 7873-7895, 2019
312019
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