This paper presents a new fuzzy sliding mode controller (FSMC) to improve control performances in the presence of uncertainties related to model errors and external disturbance (UAD). As a first step, an adaptive control law is designed using Lyapunov stability analysis. The control law can update control parameters of the FSMC with a disturbance estimator (DE) in which the closed-loop stability and finite-time convergence of tracking error are guaranteed. A solution for estimating the compensative quantity of the impact of UAD on a control system and a set of solutions are then presented in order to avoid the singular cases of the fuzzy-based function approximation, increase convergence ability, and reduce the calculating cost. Subsequentl...
[[abstract]]A semi-active vehicle suspension system using an adjustable shock absorber for a quarter...
In this paper, a disturbance observer based Takagi-Sugeno (TS) fuzzy controller is proposed for an a...
In pursuit of a comfortable vehicle driving in different road profiles, intelligent methods are used...
This paper presents a new fuzzy sliding mode controller (FSMC) to improve control performances in th...
This work proposes a novel adaptive hybrid controller based on the sliding mode controller and H-inf...
This work proposes a novel adaptive hybrid controller based on the sliding mode controller and H-inf...
This work proposes a novel adaptive type 2 fuzzy sliding controller (AT2FC) for vibration control of...
Vehicle suspension systems are usually based on passive actuators and control modes in which the dam...
In this paper, a robust fuzzy sliding-mode controller for active suspensions of a nonlinear half-car...
This paper investigates the fuzzy control issue for uncertain active suspension systems via dynamic ...
This paper investigates the fuzzy control issue for uncertain active suspension systems via dynamic ...
Abstract. For the tracking control problem of vehicle suspension, a robust design method of adaptive...
Abstract — Different characteristics can be considered in a suspension system design like: ride comf...
This paper presents a new sliding mode controller based on the theory of model following control for...
An active suspension system is important in meeting the requirements of the ride comfort and handlin...
[[abstract]]A semi-active vehicle suspension system using an adjustable shock absorber for a quarter...
In this paper, a disturbance observer based Takagi-Sugeno (TS) fuzzy controller is proposed for an a...
In pursuit of a comfortable vehicle driving in different road profiles, intelligent methods are used...
This paper presents a new fuzzy sliding mode controller (FSMC) to improve control performances in th...
This work proposes a novel adaptive hybrid controller based on the sliding mode controller and H-inf...
This work proposes a novel adaptive hybrid controller based on the sliding mode controller and H-inf...
This work proposes a novel adaptive type 2 fuzzy sliding controller (AT2FC) for vibration control of...
Vehicle suspension systems are usually based on passive actuators and control modes in which the dam...
In this paper, a robust fuzzy sliding-mode controller for active suspensions of a nonlinear half-car...
This paper investigates the fuzzy control issue for uncertain active suspension systems via dynamic ...
This paper investigates the fuzzy control issue for uncertain active suspension systems via dynamic ...
Abstract. For the tracking control problem of vehicle suspension, a robust design method of adaptive...
Abstract — Different characteristics can be considered in a suspension system design like: ride comf...
This paper presents a new sliding mode controller based on the theory of model following control for...
An active suspension system is important in meeting the requirements of the ride comfort and handlin...
[[abstract]]A semi-active vehicle suspension system using an adjustable shock absorber for a quarter...
In this paper, a disturbance observer based Takagi-Sugeno (TS) fuzzy controller is proposed for an a...
In pursuit of a comfortable vehicle driving in different road profiles, intelligent methods are used...