Quantifying Full-Body Immersion
Alihan Bakir, Ekrem Y\"uksel, Fabio Zuliani, Neil Chennoufi, Francesco Bruno, Jamie Paik

TL;DR
This paper presents a scalable, modular robotic platform that enhances full-body immersion in virtual environments through dynamic physical interactions, advancing immersive technology and human-environment integration.
Contribution
It introduces a novel modular robotic surface system enabling scalable, real-time, full-body physical interactions in virtual reality settings.
Findings
Developed a modular robotic platform for immersive environments
Achieved real-time dynamic physical feedback at any scale
Enhanced user engagement through full-body interaction
Abstract
Humanity is at the forefront of yet another digital revolution, where the lines between real and virtual worlds are dissolving, reshaping how we perceive and interact with our surroundings. In this context, we introduce a transformative paradigm for immersive virtual experiences centered around whole-body kinetic interactions. Our approach redefines immersion through three distinct levels: audio-visual immersion, capturing sensory realism; physical immersion, delivering haptic feedback; and full-body immersion (FBI), where dynamic bodily interaction integrates seamlessly with virtual environments. At the core of this innovation lies a scalable, distributable platform based on modular robotic surface units inspired by the adaptive designs of nature. These units enable the rendering of immersive environments at any scale, from intimate personal experiences to expansive multi-user…
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