Magnetic input for mobile virtual reality

Boris Smus, Christopher J. Riederer
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引用次数: 24

Abstract

Modern smartphones can create compelling virtual reality (VR) experiences through the use of VR enclosures, devices that encase the phone and project stereoscopic renderings through lenses into the user's eyes. Since the touch screen in such designs is typically hidden inside an enclosure, the main interaction mechanism of the device is not accessible. We present a new magnetic input mechanism for mobile VR devices which is wireless, unpowered, inexpensive, provides physical feedback, requires no calibration, and works reliably on the majority of modern smartphones. This is the main input mechanism for Google Cardboard, of which there are over one million units. We show robust gesture recognition, at an accuracy of greater than 95% across smartphones and assess the capabilities, accuracy and limitations of our technique through a user study.
用于移动虚拟现实的磁输入
现代智能手机可以通过使用VR外壳来创造引人注目的虚拟现实(VR)体验,VR外壳是一种将手机包裹起来的设备,通过镜头将立体渲染效果投射到用户的眼睛中。由于此类设计中的触摸屏通常隐藏在外壳内,因此无法访问设备的主要交互机制。我们为移动VR设备提出了一种新的磁性输入机制,它是无线的,无电的,便宜的,提供物理反馈,不需要校准,并且在大多数现代智能手机上可靠地工作。这是Google Cardboard的主要输入机制,目前有超过100万个Google Cardboard。我们展示了强大的手势识别,在智能手机上的准确率超过95%,并通过用户研究评估了我们技术的能力、准确性和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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