JetUnit: Rendering Diverse Force Feedback in Virtual Reality Using Water Jets
Authors
We propose JetUnit, a water-based VR haptic system designed to produce force feedback with a wide spectrum of intensities and frequencies through water jets. The key challenge in designing this system lies in optimizing parameters to enable the haptic device to generate force feedback that closely replicates the most intense force produced by direct water jets while ensuring the user remains dry. In this paper, we present the key design parameters of the JetUnit wearable device determined through a set of quantitative experiments and a perception study. We further conducted a user study to assess the impact of integrating our haptic solutions into virtual reality experiences. The results revealed that, by adhering to the design principles of JetUnit, the water-based haptic system is capable of delivering diverse force feedback sensations, significantly enhancing the immersive experience in virtual reality.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 100%
CapstanCrunch: A Haptic VR Controller with User-supplied Force Feedback
UIST '19· Force Feedback & Pseudo-Haptic Weight +1
- 100%
Pull-Ups: Enhancing Suspension Activities in Virtual Reality with Body-Scale Kinesthetic Force Feedback
UIST '19· Force Feedback & Pseudo-Haptic Weight +1
- 100%
Variance and Distribution Models for Steering Tasks
UIST '21· Force Feedback & Pseudo-Haptic Weight +1
- 67%
Force Jacket: Pneumatically-Actuated Jacket for Embodied Haptic Experiences
CHI '18· Force Feedback & Pseudo-Haptic Weight +2
- 67%
Haptic Links: Bimanual Haptics for Virtual Reality Using Variable Stiffness Actuation
CHI '18· Force Feedback & Pseudo-Haptic Weight +2
- 67%
Transcalibur: A Weight Shifting Virtual Reality Controller for 2D Shape Rendering based on Computational Perception Model
CHI '19· Force Feedback & Pseudo-Haptic Weight +2
- 67%
Improving Virtual Reality Ergonomics Through Reach-Bounded Non-Linear Input Amplification
CHI '20· Force Feedback & Pseudo-Haptic Weight +2
- 67%
Glissade: Generating Balance Shifting Feedback to Facilitate Auxiliary Digital Pen Input
CHI '20· Force Feedback & Pseudo-Haptic Weight +1
- 67%
GuideBand: Intuitive 3D Multilevel Force Guidance on a Wristband in Virtual Reality
CHI '21· Force Feedback & Pseudo-Haptic Weight +2
- 67%
The Impact of Avatar Completeness on Embodiment and the Detectability of Hand Redirection in Virtual Reality
CHI '24· Force Feedback & Pseudo-Haptic Weight +2
Based on Jaccard similarity of research subtopics & professions (≥60%)