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Design and implement chords and personal windows for multi-user collaboration on a large multi-touch vertical display

机译:设计和实现和弦和个人窗口,以在大型多点触控垂直显示屏上实现多用户协作

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Co-located collaboration on large vertical screens has become technically feasible, but users are faced with increased effort, or have to wear intrusive personal identifiers. Previous research on co-located collaboration has assumed that all users perform exactly the same task (e.g., moving and resizing photos), or that they negotiate individual actions in turns. However, there is limited user interface software that supports simultaneous performance of individual actions during shared tasks (Fig.?1a). As a remedy, we have introduced multi-touch chords (Fig.?1b) and personal action windows (Fig.?1c) for co-located collaboration on a large multi-touch vertical display. Instead of selecting an item in a fixed menu by reaching for it, users work simultaneously on shared tasks by means of personal action windows, which are triggered by multi-touch chords performed anywhere on the display. In order to evaluate the proposed technique with users, we introduced an experimental task, which stands for the group dynamics that emerge during shared tasks on a large display. A grounded theory analysis of users’ behaviour provided insights into established co-located collaboration topics, such as conflict resolution strategies and space negotiation. The main contribution of this work is the design and implementation of a novel seamless identification and interaction technique that supports diverse multi-touch interactions by multiple users: multi-touch chord interaction along with personal action windows. Fig.?1 We have designed a toolkit for multi-touch chords and personal action windows for co-located collaboration on large multi-touch vertical displays
机译:在大型垂直屏幕上协同定位协作在技术上已经变得可行,但是用户面临着更多的工作,或者不得不佩戴侵入性的个人识别码。先前对同位协作的研究假设所有用户都执行完全相同的任务(例如,移动和调整照片的大小),或者他们轮流协商单个操作。但是,有限的用户界面软件支持在共享任务期间同时执行各个动作(图1a)。作为一种补救措施,我们引入了多点触摸和弦(图1b)和个人操作窗口(图1c),用于在大型多点触摸垂直显示器上进行并置协作。用户无需通过触及固定菜单来选择项目,而是通过个人操作窗口同时处理共享任务,这些操作窗口由显示器上任何位置执行的多点触摸和弦触发。为了与用户一起评估所提出的技术,我们引入了一个实验任务,该任务代表在大型显示器上共享任务期间出现的组动态。对用户行为的扎根理论分析提供了对已建立的协同定位协作主题(例如冲突解决策略和空间协商)的见解。这项工作的主要贡献是新颖的无缝识别和交互技术的设计和实现,该技术支持多个用户进行的多种多点触摸交互:多点触摸和弦交互以及个人操作窗口。图?1我们设计了一个用于多点触摸和弦和个人操作窗口的工具包,用于在大型多点触摸垂直显示器上进行并置协作

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