Glissade: Generating Balance Shifting Feedback to Facilitate Auxiliary Digital Pen Input
Honorable MentionAuthors
This paper introduces Glissade, a digital pen that generates balance shifting feedback by changing the weight distribution of the pen. A pulley system shifts a brass mass inside the pen to change the pen's center of mass and moment of inertia. When the mass is stationary, the pen delivers a constant yet natural sensation of weight, which can be used to convey a status. The pen can also generate a variety of haptic clues by actuating the mass according to the tilt or rotation of the pen, two commonly-used auxiliary pen input channels. Glissade demonstrates new possibilities that balance shifting feedback can bring to digital pen interactions. We validated the usability of this feedback by determining the recognizability of six balance patterns a mix of static and dynamic patterns chosen based on our design considerations in two controlled experiments. The results show that, on average, the participants could distinguish between the patterns with a 94.25% accuracy. At the end, we demonstrate a set of novel interactions enabled by Glissade and discuss the directions for future research.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 75%
Big or Small, It’s All in Your Head: Visuo-Haptic Illusion of Size-Change Using Finger-Repositioning
CHI '24· Force Feedback & Pseudo-Haptic Weight +2
- 75%
ELAXO : Rendering Versatile Resistive Force Feedback for Fingers Grasping and Twisting
UIST '22· Force Feedback & Pseudo-Haptic Weight +1
- 75%
MetamorphX: An Ungrounded 3-DoF Moment Display that Changes its Physical Properties through Rotational Impedance Control
UIST '22· Force Feedback & Pseudo-Haptic Weight +1
- 67%
CapstanCrunch: A Haptic VR Controller with User-supplied Force Feedback
UIST '19· Force Feedback & Pseudo-Haptic Weight +1
- 67%
Pull-Ups: Enhancing Suspension Activities in Virtual Reality with Body-Scale Kinesthetic Force Feedback
UIST '19· Force Feedback & Pseudo-Haptic Weight +1
- 67%
Variance and Distribution Models for Steering Tasks
UIST '21· Force Feedback & Pseudo-Haptic Weight +1
- 67%
JetUnit: Rendering Diverse Force Feedback in Virtual Reality Using Water Jets
UIST '24· Force Feedback & Pseudo-Haptic Weight +1
- 60%
Omni: Volumetric Sensing and Actuation of Passive Magnetic Tools for Dynamic Haptic Feedback
UIST '20· Force Feedback & Pseudo-Haptic Weight +2
- 60%
CoVR: A Large-Scale Force-Feedback Robotic Interface for Non-Deterministic Scenarios in VR
UIST '20· Force Feedback & Pseudo-Haptic Weight +2
- 60%
ElaStick: A Handheld Variable Stiffness Display for Rendering Dynamic Haptic Response of Flexible Object
UIST '20· Force Feedback & Pseudo-Haptic Weight +2
Based on Jaccard similarity of research subtopics & professions (≥60%)