Thor’s Hammer: An Ungrounded Force Feedback Device Utilizing Propeller-Induced Propulsive Force
Authors
We present a new handheld haptic device, Thor’s Hammer, which uses propeller propulsion to generate ungrounded, 3-DOF force feedback. Thor’s Hammer has six motors and propellers that generates strong thrusts of air without the need for physical grounding or heavy air compressors. With its location and orientation tracked by an optimal tracking system, the system can exert forces in arbitrary directions regardless of the device’s orientation. Our technical evaluation shows that Thor’s Hammer can apply up to 4 N of force in arbitrary directions with less than 0.11 N and 3.9° of average magnitude and orientation errors. We also present virtual reality applications that can benefit from the force feedback provided by Thor’s Hammer. Using these applications, we conducted a preliminary user study and participants felt the experience more realistic and immersive with the force feedback.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 100%
PaCaPa: A Handheld VR Device for Rendering Size, Shape, and Stiffness of Virtual Objects in Tool-based Interactions
CHI '19· Force Feedback & Pseudo-Haptic Weight +1
- 100%
Knock on Wood: Combining Redirected Touching and Physical Props for Tool-Based Interaction in Virtual Reality
CHI '20· Force Feedback & Pseudo-Haptic Weight +1
- 100%
PoCoPo: Handheld Pin-based Shape Display for Haptic Rendering in Virtual Reality
CHI '20· Force Feedback & Pseudo-Haptic Weight +1
- 100%
Augmenting Perceived Length of Handheld Controllers: Effects of Object Handle Properties
CHI '24· Force Feedback & Pseudo-Haptic Weight +1
- 100%
iGripper: A Semi-Active Handheld Haptic VR Controller Based on Variable Stiffness Mechanism
CHI '25· Force Feedback & Pseudo-Haptic Weight +1
- 100%
ElastImpact: 2.5D Multilevel Instant Impact Using Elasticity on Head-Mounted Displays
UIST '19· 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%
OMOY: A Handheld Robotic Gadget that Shifts its Weight to Express Emotions and Intentions
CHI '20· Force Feedback & Pseudo-Haptic Weight +2
- 67%
HapticWings: Enhancing the Experience of Extra Wing Motions in Virtual Reality through Dynamic 2D Weight Shifting
DIS '25· Force Feedback & Pseudo-Haptic Weight +2
- 67%
PrintShear: Shear Input Based on Fingerprint Deformation
UbiComp '23· Vibrotactile Feedback & Skin Stimulation +2
Based on Jaccard similarity of research subtopics & professions (≥60%)