SpinShot: Optimizing Both Physical and Perceived Force Feedback of Flywheel-Based, Directional Impact Handheld Devices

Authors

CF

National Taiwan University

EW

National Taiwan University

CC

National Taiwan University

YC

National Taiwan University

AL

National Taiwan University

YC

National Taiwan University

CC

National Taiwan University

YC

National Taiwan University

CT

National Taiwan University

MY

National Taiwan University

Force Feedback & Pseudo-Haptic WeightImmersion & Presence ResearchGame Developers & DesignersUI/UX Designers

Real-world impact, such as hitting a tennis ball and a baseball, generates instantaneous, directional impact forces. However, current ungrounded force feedback technologies, such as air jets and propellers, can only generate directional impulses that are 10x-10,000x weaker. We present SpinShot, a flywheel-based device with a solenoid-actuated stopper capable of generating directional impulse of 22Nm in 1ms, which is more than 10x stronger than prior ungrounded directional technologies. Furthermore, we present a novel force design that reverses the flywheel immediately after the initial impact, to significantly increase the perceived magnitude. We conducted a series of two formative, perceptual studies (n=16, 18), followed by a summative user experience study (n=16) that compared SpinShot vs. moving mass (solenoid) and vs. air jets in a VR baseball hitting game. Results showed that SpinShot significantly improved realism, immersion, magnitude (p < .01) compared to both baselines, but significantly reduced comfort vs. air jets primarily due to the 2.9x device weight. Overall, SpinShot was preferred by 63-75% of the participants.

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https://hci.top/en/papers/uist/170972/2024

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DOI: https://doi.org/10.1145/3654777.3676433
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UIST
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2024
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10 authors
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Force Feedback & Pseudo-Haptic Weight, Immersion & Presence Research
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Game Developers & Designers, UI/UX Designers
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