640
Views
35
CrossRef citations to date
0
Altmetric
Original Articles

Multiplexed model predictive control for active vehicle suspensions

, &
Pages 347-363 | Received 22 Nov 2013, Accepted 10 Apr 2014, Published online: 02 Oct 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Wenping Xue, Kangji Li, Qian Chen & Guohai Liu. (2019) Mixed FTS/H∞ control of vehicle active suspensions with shock road disturbance. Vehicle System Dynamics 57:6, pages 841-854.
Read now

Articles from other publishers (34)

Weipeng Zhao & Liang Gu. (2024) RBF-Based Fractional-Order SMC Fault-Tolerant Controller for a Nonlinear Active Suspension. Machines 12:4, pages 270.
Crossref
Zhiyuan Liu, Yulin Si & Weichao Sun. (2024) Ride comfort oriented integrated design of preview active suspension control and longitudinal velocity planning. Mechanical Systems and Signal Processing 208, pages 110992.
Crossref
Masahiro Oya & Hiraku Komura. (2024) Robust active suspension control of vehicles with varying vehicle mass. Artificial Life and Robotics.
Crossref
Baiyang Shi, Wei Dai & Jian Yang. (2023) Performance enhancement of vehicle suspension system with geometrically nonlinear inerters. Archive of Applied Mechanics 94:1, pages 39-55.
Crossref
Yunbao Yin, Bo Luo, Hongbin Ren, Qiang Fang & Chunsheng Zhang. (2022) Robust control design for active suspension system with uncertain dynamics and actuator time delay. Journal of Mechanical Science and Technology 36:12, pages 6319-6327.
Crossref
Yi Wang, Masahiro Oya & Yuichiro Taira. (2022) A new active suspension control scheme for vehicles considering steering stability. Artificial Life and Robotics 27:4, pages 812-817.
Crossref
Ying Zhou, Zhongxing Li, Wenhao Yu & Yi Yu. (2022) Cooperative Control of Interconnected Air Suspension Based on Model Predictive Control. Applied Sciences 12:19, pages 9886.
Crossref
Alejandro Piñón, Antonio Favela-Contreras, Luis C. Félix-Herrán, Francisco Beltran-Carbajal & Camilo Lozoya. (2021) An ARX Model-Based Predictive Control of a Semi-Active Vehicle Suspension to Improve Passenger Comfort and Road-Holding. Actuators 10:3, pages 47.
Crossref
Yong Wang, Hu Ding & Li-Qun Chen. (2019) Averaging analysis on a semi-active inerter–based suspension system with relative-acceleration–relative-velocity control. Journal of Vibration and Control 26:13-14, pages 1199-1215.
Crossref
AM Omer Abbaker, Haoping Wang & Yang Tian. (2019) Voltage control of solid oxide fuel cell power plant based on intelligent proportional integral-adaptive sliding mode control with anti-windup compensator. Transactions of the Institute of Measurement and Control 42:1, pages 116-130.
Crossref
Pan Jin, Wenping Xue & Kangji Li. (2019) Actuator Fault Estimation for Vehicle Active Suspensions Based on Adaptive Observer and Genetic Algorithm. Shock and Vibration 2019, pages 1-12.
Crossref
Ahmad Mozaffari, Shojaeddin Chenouri, Yechen Qin & Amir Khajepour. (2019) Learning-based vehicle suspension controller design: A review of the state-of-the-art and future research potentials. eTransportation 2, pages 100024.
Crossref
MRABAH Loubna, EL Houssaine TISSIR & OUAHI Mohamed. (2019) H ∞ Control For Vehicle Active Suspension Systems In Finite Frequency Domain . H ∞ Control For Vehicle Active Suspension Systems In Finite Frequency Domain .
Gai Yan, Mingxia Fang & Jian Xu. (2019) Analysis and experiment of time-delayed optimal control for vehicle suspension system. Journal of Sound and Vibration 446, pages 144-158.
Crossref
Yinlong Hu, Kai Wang, Yonghua Chen & Michael ZQ Chen. (2018) Inerter-based semi-active suspensions with low-order mechanical admittance via network synthesis. Transactions of the Institute of Measurement and Control 40:15, pages 4233-4245.
Crossref
Yinlong Hu & Michael Z. Q. Chen. (2018) Low-Complexity Passive Vehicle Suspension Design Based on Element-Number-Restricted Networks and Low-Order Admittance Networks. Journal of Dynamic Systems, Measurement, and Control 140:10.
Crossref
Hongchao Li, Michael Z. Q. Chen & Yonghua Chen. (2018) Achievable Dynamic Response for Vehicle Suspensions with Acceleration Measurements. Achievable Dynamic Response for Vehicle Suspensions with Acceleration Measurements.
Tiechao Wang & Gang Li. (2018) Adaptive Critic Optimal Fuzzy Control for Quarter-Car Suspension Systems. Adaptive Critic Optimal Fuzzy Control for Quarter-Car Suspension Systems.
Hongyu Zheng, Tao Zou, Jingtao Hu & Haibin Yu. (2018) An Offline Optimization and Online Table Look-Up Strategy of Two-Layer Model Predictive Control. IEEE Access 6, pages 47433-47441.
Crossref
Dazhuang Wang, Dingxuan Zhao, Mingde Gong & Bin Yang. (2018) Research on Robust Model Predictive Control for Electro-Hydraulic Servo Active Suspension Systems. IEEE Access 6, pages 3231-3240.
Crossref
Siqi Shao, Hongliang Zhou & Haifeng Liu. (2018) Distributed Model Predictive Control and Implementation for Vehicle Active Suspensions. IFAC-PapersOnLine 51:31, pages 961-966.
Crossref
H.P. Wang, Ghazally I.Y. Mustafa & Y. Tian. (2018) Model-free fractional-order sliding mode control for an active vehicle suspension system. Advances in Engineering Software 115, pages 452-461.
Crossref
Yinlong Hu, Michael Z.Q. Chen & Yonghui Sun. (2017) Comfort-oriented vehicle suspension design with skyhook inerter configuration. Journal of Sound and Vibration 405, pages 34-47.
Crossref
Shiping Wen, Michael Z. Q. Chen, Zhigang Zeng, Xinghuo Yu & Tingwen Huang. (2017) Fuzzy Control for Uncertain Vehicle Active Suspension Systems via Dynamic Sliding-Mode Approach. IEEE Transactions on Systems, Man, and Cybernetics: Systems 47:1, pages 24-32.
Crossref
Michael Z. Q. Chen, Yinlong Hu, Chanying Li & Guanrong Chen. (2016) Application of Semi-Active Inerter in Semi-Active Suspensions Via Force Tracking. Journal of Vibration and Acoustics 138:4.
Crossref
Hakan Yazici. (2016) Design of a Parameter-Dependent Optimal Vibration Control of a Non-Linear Vehicle Suspension System. Mathematical and Computational Applications 21:2, pages 13.
Crossref
Bangji Zhang, Jie Zhang, Jinhua Yi, Nong Zhang & Qiutan Jin. (2016) Modal and Dynamic Analysis of a Vehicle with Kinetic Dynamic Suspension System. Shock and Vibration 2016, pages 1-18.
Crossref
Michael Z. Q. Chen, Yinlong Hu & Fu-Cheng Wang. (2015) Passive Mechanical Control With a Special Class of Positive Real Controllers: Application to Passive Vehicle Suspensions. Journal of Dynamic Systems, Measurement, and Control 137:12.
Crossref
Tri Tran, D. Zhou, K-V. Ling & Jan M. Maciejowski. (2015) Multiplexed model predictive control of interconnected systems. Multiplexed model predictive control of interconnected systems.
Michael Z. Q. Chen, Yinlong Hu, Chanying Li & Guanrong Chen. (2015) Performance Benefits of Using Inerter in Semiactive Suspensions. IEEE Transactions on Control Systems Technology 23:4, pages 1571-1577.
Crossref
Yinlong Hu, Hao Du & Michael Z. Q. Chen. (2015) An inerter-based electromagnetic device and its application in vehicle suspensions. An inerter-based electromagnetic device and its application in vehicle suspensions.
Yuance Liu, Yinlong Hu & Michael Z. Q. Chen. (2015) Effect of play in inerter on vehicle suspension system. Effect of play in inerter on vehicle suspension system.
Kai Wang & Michael Z. Q. Chen. (2015) Synthesis of transfer functions as two-port RC ladder networks with specified gains. Synthesis of transfer functions as two-port RC ladder networks with specified gains.
Yinlong Hu, Kai Wang & Michael Z. Q. Chen. (2015) Semi-active suspensions with low-order mechanical admittances incorporating inerters. Semi-active suspensions with low-order mechanical admittances incorporating inerters.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.