The paper concerns the application of fuzzy logic to the control of a magnetorheological fluid damper (MR damper) employed in a driver's seat support. The seat is modeled as a 1 DOF system to which a generalized model of an MR damper valid for fluctuating magnetic fields is attached. The performance of the feedback system with a fuzzy controller is tested in computer simulations and compared with the performance of an open loop system and the feedback system with an on-off controller. The obtained results are verified in laboratory experiments. For this purpose, the on-off and fuzzy real-time controllers for the MR damper are developed in integrated design and control envirinment of MATLAB/Simulink. The advantages of fuzzy control are prove...
ABSTRACT: A magnetorheological (MR) damper model is established and linearized based on theory analy...
This paper proposes a new approach to the design of a control-oriented model for magnetorheological ...
In this paper, the development and implementation of a novel semiactive suspension control of a qua...
The paper concerns the application of fuzzy logic to the control of a ma-gnetorheological uid damper...
This work focuses on applying fuzzy control embedded in microcontrollers in an experimental apparatu...
In this paper, the development of a semi- active suspension control of quarter car model using fuzzy...
This paper presents the control strategies of nonlinear vehicle suspension using a magnetorheologica...
This paper presents the development of an innovative seat suspension working with a rotary magnetorh...
The paper presents a study on the direct voltage control of a magnetorheological (MR) damper for app...
In this paper, the development of a novel semiactive suspension control of quarter car model using ...
This study deals with the investigation on the modeling of a Magne-Ride damper and its uses in overc...
Semi-active vehicle suspension systems with Magneto-Rheological (MR) dampers have recently received ...
ABSTRACT: Control devices can be used in civil structures to dissipate energy from earthquakes, redu...
The MR damper is a control device that consists of a hydraulic cylinder filled with magnetically pol...
Semi-active (SA) suspension system with mathematical model is established based on a quarter vehicle...
ABSTRACT: A magnetorheological (MR) damper model is established and linearized based on theory analy...
This paper proposes a new approach to the design of a control-oriented model for magnetorheological ...
In this paper, the development and implementation of a novel semiactive suspension control of a qua...
The paper concerns the application of fuzzy logic to the control of a ma-gnetorheological uid damper...
This work focuses on applying fuzzy control embedded in microcontrollers in an experimental apparatu...
In this paper, the development of a semi- active suspension control of quarter car model using fuzzy...
This paper presents the control strategies of nonlinear vehicle suspension using a magnetorheologica...
This paper presents the development of an innovative seat suspension working with a rotary magnetorh...
The paper presents a study on the direct voltage control of a magnetorheological (MR) damper for app...
In this paper, the development of a novel semiactive suspension control of quarter car model using ...
This study deals with the investigation on the modeling of a Magne-Ride damper and its uses in overc...
Semi-active vehicle suspension systems with Magneto-Rheological (MR) dampers have recently received ...
ABSTRACT: Control devices can be used in civil structures to dissipate energy from earthquakes, redu...
The MR damper is a control device that consists of a hydraulic cylinder filled with magnetically pol...
Semi-active (SA) suspension system with mathematical model is established based on a quarter vehicle...
ABSTRACT: A magnetorheological (MR) damper model is established and linearized based on theory analy...
This paper proposes a new approach to the design of a control-oriented model for magnetorheological ...
In this paper, the development and implementation of a novel semiactive suspension control of a qua...