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3DTouch: A wearable 3D input device for 3D applications

机译:3DTouch:适用于3D应用程序的可穿戴3D输入设备

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3D applications appear in every corner of life in the current technology era. There is a need for an ubiquitous 3D input device that works with many different platforms, from head-mounted displays (HMDs) to mobile touch devices, 3DTVs, and even the Cave Automatic Virtual Environments. We present 3DTouch [1], a novel wearable 3D input device worn on the fingertip for 3D manipulation tasks. 3DTouch is designed to fill the missing gap of a 3D input device that is self-contained, mobile, and universally works across various 3D platforms. This video presents a working prototype of our solution, which is described in details in the paper [1]. Our approach relies on a relative positioning technique using an optical laser sensor (OPS) and a 9-DOF inertial measurement unit (IMU). The device employs touch input for the benefits of passive haptic feedback, and movement stability. On the other hand, with touch interaction, 3DTouch is conceptually less fatiguing to use over many hours than 3D spatial input devices. We propose a set of 3D interaction techniques including selection, translation, and rotation using 3DTouch. An evaluation also demonstrates the device's tracking accuracy of 1.10 mm and 2.33 degrees for subtle touch interaction in 3D space. We envision that modular solutions like 3DTouch opens up a whole new design space for interaction techniques to further develop on.
机译:3D应用程序出现在当前技术时代的每个角落。需要一种无所不在的3D输入设备,该设备可与许多不同的平台一起使用,从头戴式显示器(HMD)到移动触摸设备,3DTV甚至是Cave自动虚拟环境。我们介绍了3DTouch [1],这是一种新颖的可穿戴3D输入设备,可戴在指尖上进行3D操作。 3DTouch旨在填补3D输入设备缺少的空白,该设备是独立的,可移动的,并且可以在各种3D平台上通用。该视频介绍了我们解决方案的有效原型,在论文[1]中对其进行了详细描述。我们的方法依赖于使用光学激光传感器(OPS)和9自由度惯性测量单元(IMU)的相对定位技术。该设备采用触摸输入,具有被动触觉反馈和运动稳定性的优点。另一方面,通过触摸交互,与3D空间输入设备相比,从概念上讲,3DTouch可以长时间使用的疲劳程度更低。我们提出了一套3D交互技术,包括使用3DTouch的选择,平移和旋转。评估还证明了该设备在3D空间中微妙的触摸交互的跟踪精度为1.10 mm和2.33度。我们设想像3DTouch这样的模块化解决方案为交互技术的进一步开发开辟了一个全新的设计空间。

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