ElastOscillation: 3D Multilevel Force Feedback for Damped Oscillation on VR Controllers
Authors
Force feedback from damped oscillation is a common effect in our daily lives, especially when shaking an elastic object, an object hanging or containing other stuff, or a container with liquid, e.g., casting with a fishing pole or wine-swirling. Such a force, affected by complex physical variations and collisions, is difficult to properly simulate using current force feedback methods. Therefore, we propose ElastOscillation on a virtual reality (VR) controller to provide 3D multilevel force feedback for damped oscillation to enhance VR experiences. ElastOscillation consists of a proxy, six elastic bands and DC motors. It leverages the motors to control the bands' elasticity to restrain the movement of the proxy, which is connected with the bands. Therefore, when users shake the ElastOscillation device, the proxy shakes or moves in corresponding ranges of movement. The users then perceive the force from oscillation at different levels. In addition, elastic force from the bands further reinforces the oscillation force feedback. We conducted a force perception study to understand users' distinguishability for perceiving oscillation forces in 1D and 2D movement, respectively. Based on the results, we performed a VR experience study to show that the force feedback provided by ElastOscillation enhances VR realism.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 100%
Breaking the Tracking: Enabling Weight Perception using Perceivable Tracking Offsets
CHI '18· Force Feedback & Pseudo-Haptic Weight
- 100%
ForceBoard: Subtle Text Entry Leveraging Pressure
CHI '18· Force Feedback & Pseudo-Haptic Weight
- 100%
Use the Force Picker, Luke: Space-Efficient Value Input on Force-Sensitive Mobile Touchscreens
CHI '18· Force Feedback & Pseudo-Haptic Weight
- 100%
PalmBoard: Leveraging Implicit Touch Pressure in Statistical Decoding for Indirect Text Entry
CHI '20· Force Feedback & Pseudo-Haptic Weight
- 100%
T-Force: Exploring the Use of Typing Force for Three State Virtual Keyboards
CHI '23· Force Feedback & Pseudo-Haptic Weight
- 100%
transPAF: Rendering Omnidirectional Impact Feedback with Dynamic Point of Application of Force All Round a Controller
CHI '23· Force Feedback & Pseudo-Haptic Weight
- 100%
MobileGravity: Mobile Simulation of a High Range of Weight in Virtual Reality
CHI '24· Force Feedback & Pseudo-Haptic Weight
- 100%
AirPush: A Pneumatic Wearable Haptic Device Providing Multi-Dimensional Force Feedback on a Fingertip
CHI '24· Force Feedback & Pseudo-Haptic Weight
- 100%
Motion-Coupled Asymmetric Vibration for Pseudo Force Rendering in Virtual Reality
CHI '25· Force Feedback & Pseudo-Haptic Weight
- 100%
Virtual Muscle Force: Communicating Kinesthetic Forces Through Pseudo-Haptic Feedback and Muscle Input
UIST '19· Force Feedback & Pseudo-Haptic Weight
Based on Jaccard similarity of research subtopics & professions (≥60%)