This paper presents a study on continuously variable stiffness control of vehicle seat suspension using a magnetorheological elastomer (MRE) isolator. A concept design for an MRE isolator is proposed in the paper and its behavior is experimentally evaluated. An integrated seat suspension model, which includes a quarter-car suspension and a seat suspension with a driver body model, is used to design a sub-optimal controller for an active isolator. The desired control force generated by this active isolator is then emulated by the MRE isolator through its continuously variable stiffness property when the actuating condition is met. The vibration control effect of the MRE isolator is evaluated in terms of driver body acceleration responses un...
© 1982-2012 IEEE. This article introduces a rotary semiactive variable stiffness (VS) device, includ...
In this work, a new type of adaptive vibration isolator based on magnetorheological (MR) elastomer (...
This study evaluates the vibration isolation performance of an adaptive magnetorheological elastomer...
This paper presents a study on continuously variable stiffness control of vehicle seat suspension us...
The purpose of this work is to explore the application and potential of magnetorheological elastomer...
This paper presents theoretical modeling of a new magnetorheological elastomer (MRE) base isolator a...
Magnetorheological elastomer (MRE) is one of the smart materials that have interested many scientist...
The objective of this work is to explore the capability of a Semi-Active (SA) elastomer and control ...
Long-term vibration poses a threat to drivers’ health and affects their ride performance. Furthermor...
A vibration control system is put forward using a magnetorheological damper (MRD) and a magnetorheol...
In this article, an integrated active and semi-active seat suspension for heavy duty vehicles is pro...
Most of the vibration isolator has fixed stiffness such as passive vehicle mounting system. Objectiv...
This thesis concerns with the development, design optimization and control of an MRE-based semi-acti...
This paper presents a test rig developed for the experimental investigations on a vibration isolatio...
Semiactive vibration control systems possess both the simplicity and inherent reliability of passive...
© 1982-2012 IEEE. This article introduces a rotary semiactive variable stiffness (VS) device, includ...
In this work, a new type of adaptive vibration isolator based on magnetorheological (MR) elastomer (...
This study evaluates the vibration isolation performance of an adaptive magnetorheological elastomer...
This paper presents a study on continuously variable stiffness control of vehicle seat suspension us...
The purpose of this work is to explore the application and potential of magnetorheological elastomer...
This paper presents theoretical modeling of a new magnetorheological elastomer (MRE) base isolator a...
Magnetorheological elastomer (MRE) is one of the smart materials that have interested many scientist...
The objective of this work is to explore the capability of a Semi-Active (SA) elastomer and control ...
Long-term vibration poses a threat to drivers’ health and affects their ride performance. Furthermor...
A vibration control system is put forward using a magnetorheological damper (MRD) and a magnetorheol...
In this article, an integrated active and semi-active seat suspension for heavy duty vehicles is pro...
Most of the vibration isolator has fixed stiffness such as passive vehicle mounting system. Objectiv...
This thesis concerns with the development, design optimization and control of an MRE-based semi-acti...
This paper presents a test rig developed for the experimental investigations on a vibration isolatio...
Semiactive vibration control systems possess both the simplicity and inherent reliability of passive...
© 1982-2012 IEEE. This article introduces a rotary semiactive variable stiffness (VS) device, includ...
In this work, a new type of adaptive vibration isolator based on magnetorheological (MR) elastomer (...
This study evaluates the vibration isolation performance of an adaptive magnetorheological elastomer...