TORC: A Virtual Reality Controller for In-Hand High-Dexterity Finger Interaction
Authors
Recent hand-held controllers have explored a variety of haptic feedback sensations for users in virtual reality by producing both kinesthetic and cutaneous feedback from virtual objects. These controllers are grounded to the user's hand and can only manipulate objects through arm and wrist motions, not using the dexterity of their fingers as they would in real life. In this paper, we present TORC, a rigid haptic controller that renders virtual object characteristics and behaviors such as texture and compliance. Users hold and squeeze TORC using their thumb and two fingers and interact with virtual objects by sliding their thumb on TORC's trackpad. During the interaction, vibrotactile motors produce sensations to each finger that represent the haptic feel of squeezing, shearing or turning an object. Our evaluation showed that using TORC, participants could manipulate virtual objects more precisely (e.g., position and rotate objects in 3D) than when using a conventional VR controller.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 100%
Substituting Motion Effects with Vibrotactile Effects for 4D Experiences
CHI '18· Vibrotactile Feedback & Skin Stimulation +1
- 100%
Thermal Masking: When the Illusion Takes Over the Real
CHI '24· Vibrotactile Feedback & Skin Stimulation +1
- 100%
Experiencing Dynamic Weight Changes in Virtual Reality Through Pseudo-Haptics and Vibrotactile Feedback
CHI '24· Vibrotactile Feedback & Skin Stimulation +1
- 100%
Diversifying Grain-Based Compliance Illusion by Varying Base Compliance
CHI '25· Vibrotactile Feedback & Skin Stimulation +1
- 100%
3D Touch Force Estimation from Capacitive Images
IUI '25· Vibrotactile Feedback & Skin Stimulation +1
- 100%
Haptic Feedback to the Palm and Fingers for Improved Tactile Perception of Large Objects
UIST '18· Vibrotactile Feedback & Skin Stimulation +1
- 67%
HapCube: A Wearable Tactile Device to Provide Tangential and Normal Pseudo-Force Feedback on a Fingertip
CHI '18· Vibrotactile Feedback & Skin Stimulation +2
- 67%
A Meta-Bayesian Approach for Rapid Online Parametric Optimization for Wrist-based Interactions
CHI '24· Vibrotactile Feedback & Skin Stimulation +2
- 67%
Haptic Permeability: Adding Holes to Tactile Devices Improves Dexterity
CHI '24· Vibrotactile Feedback & Skin Stimulation +1
- 67%
PrintShear: Shear Input Based on Fingerprint Deformation
UbiComp '23· Vibrotactile Feedback & Skin Stimulation +2
Based on Jaccard similarity of research subtopics & professions (≥60%)