This thesis reports on the design, construction, and evaluation of a prototype two degrees-of-freedom (DOF) haptic interface, which takes advantage of Magneto-Rheological Fluid (MRF) based clutches for actuation. Haptic information provides important cues in teleoperated systems and enables the user to feel the interaction with a remote or virtual environment during teleoperation. The two main objectives in designing a haptic interface are stability and transparency. Indeed, deficiencies in these factors in haptics-enabled telerobotic systems has the introduction of haptics in medical environments where safety and reliability are prime considerations. An actuator with poor dynamics, high inertia, large size, and heavy weight can significant...
© 2015 IEEE.This paper presents the development and evaluation of an MR compatible haptic interface ...
This paper describes an innovative Haptic Interface device based on Magneto-Rheological Fluid (MRF)....
As computer technologies improve year by year, advanced and intuitive user interfaces become increas...
This paper describes the construction and stability and transparency evaluation of a prototype two d...
Smart materials such as magnetorheological fluids (MRF) offer an interesting technology for use in h...
Research has been performed to develop haptic interface devices, utilizing advanced actuators, to tr...
Studies on haptic devices are acquiring much importance due to the widespread inclusion of the sense...
The aim of this Thesis is to investigate the possibility of mimicking haptic perception by using new...
In this work, a new type of haptic system inspired by human wrist motion is proposed, and its perfor...
The overall goal of the research conducted in this paper is to develop next generation force feedbac...
We report on the design and implementation of innovative haptic interfaces based on magnetorheologic...
This paper deals with design and implementation of innovative haptic interfaces based on Magnetorheo...
This paper is concerned with exploring the possibility of using Magneto-Rheological Fluids (MRF) as ...
A number of haptic displays based on smart fluidic materials such as electrorheological (ERFs) and m...
A haptic interface based on magneto-rheological (MR) fluids is presented. The device is aiming for l...
© 2015 IEEE.This paper presents the development and evaluation of an MR compatible haptic interface ...
This paper describes an innovative Haptic Interface device based on Magneto-Rheological Fluid (MRF)....
As computer technologies improve year by year, advanced and intuitive user interfaces become increas...
This paper describes the construction and stability and transparency evaluation of a prototype two d...
Smart materials such as magnetorheological fluids (MRF) offer an interesting technology for use in h...
Research has been performed to develop haptic interface devices, utilizing advanced actuators, to tr...
Studies on haptic devices are acquiring much importance due to the widespread inclusion of the sense...
The aim of this Thesis is to investigate the possibility of mimicking haptic perception by using new...
In this work, a new type of haptic system inspired by human wrist motion is proposed, and its perfor...
The overall goal of the research conducted in this paper is to develop next generation force feedbac...
We report on the design and implementation of innovative haptic interfaces based on magnetorheologic...
This paper deals with design and implementation of innovative haptic interfaces based on Magnetorheo...
This paper is concerned with exploring the possibility of using Magneto-Rheological Fluids (MRF) as ...
A number of haptic displays based on smart fluidic materials such as electrorheological (ERFs) and m...
A haptic interface based on magneto-rheological (MR) fluids is presented. The device is aiming for l...
© 2015 IEEE.This paper presents the development and evaluation of an MR compatible haptic interface ...
This paper describes an innovative Haptic Interface device based on Magneto-Rheological Fluid (MRF)....
As computer technologies improve year by year, advanced and intuitive user interfaces become increas...