The Interactive Spatial Surface - Blended Interaction on a Stereoscopic Multi-Touch Surface

The Interactive Spatial Surface - Blended Interaction on a Stereoscopic Multi-Touch Surface
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交互式空间表面 - 立体多点触控表面上的混合交互

DOI:
10.1524/9783110344509.343
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发表时间:
2014
期刊:
Proceedings of the 2015 Annual Symposium on Computer-Human Interaction in Play
影响因子:
--
通讯作者:
Frank Steinicke
Frank Steinicke
中科院分区:
--
文献类型:
--
作者:
Paul Lubos;Carina Garber;Anjuly Hoffert;Ina Reis;Frank Steinicke

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目前的触摸技术提供了精确和准确的大型多点触摸表面,允许多个用户在这些二维设置中进行协作。此外,显示技术领域的最新发展支持三维(3D)虚拟环境(VE)在这些表面上以高保真视觉细节的可视化。最后,具有成本效益的深度摄像头(如Microsoft Kinect)支持经济实惠的手部跟踪,从而实现表面上方的交互。在本文中,我们介绍了交互式空间表面(iSPACE),一个系统相结合的经典的多点触摸为基础的互动与直接半空中的选择和操纵立体投影的虚拟物体。该系统采用先进的超大型超高清3D显示屏和高性能触摸框架,可提供高质量的协作探索。
Current touch technology provides precise and accurate large multi-touch surfaces, which allow multiple users to collaborate in these two-dimensional setups. Furthermore, recent developments in the field of display technology support visualization of three-dimensional (3D) virtual environments (VEs) in high-fidelity visual detail on these surfaces. Finally, cost-efficient depth cameras such as the Microsoft Kinect support affordable hand tracking, which enables interaction above the surface. In this paper we introduce the interactive SPAtial SurfaCE (iSPACE), a system combining classical multitouch-based interaction with direct mid-air selection and manipulation of stereoscopically projected virtual objects. By utilizing a large state-of-the-art Ultra HD 3D display and a high-performance touch frame, the system offers high-quality collaborative exploration.
重新审视触摸虚空:桌面表面及上方的触摸行为分析
DOI: 10.1007/978-3-642-40483-2_19
发表时间: 2013
期刊:
影响因子: --
作者:
Gerd Bruder;Frank Steinicke;Wolfgang Stuerzlinger
通讯作者: Wolfgang Stuerzlinger