AI 中文总结
本研究针对可折叠移动设备数据可视化认知缺口,构建设备中心设计空间与含四个视角的概念框架,经工作坊与原型验证,为该类设备可视化应用开发提供基础与启发。
AI 中文摘要
本研究探索新型可折叠移动设备(可折叠设备)上数据可视化的独特潜力。尽管可折叠设备已实现商业化,但如何利用其独特特性进行可视化的相关认知仍有限,且随着其形态日益多样,该缺口还将扩大。为解决这一问题,我们采用两步法:首先,构建以设备为中心的设计空间,围绕可折叠设备的物理属性与使用属性进行结构化;其次,引入一个概念框架,从四个互补视角研究可折叠设备上的可视化:更多显示(More Displays)——分配多个视图以利用额外显示空间;更多形态(More Shapes)——将可视化映射到空间折叠状态;更多交互(More Interactions)——耦合可视化任务与折叠交互;更多状态(More States)——通过折叠实现响应式可视化。我们通过低保真构思工作坊及后续交互原型的制作,补充完善该设计空间与概念框架。我们反思了这一探索性、设计驱动型过程的结果与经验教训,并探讨了机遇与挑战,包括所提概念与商业化可折叠设备之间的缺口。通过提供概念基础并阐明可折叠设备的潜力,我们希望为这类新兴设备未来可视化应用的开发提供启发与参考。
英文摘要
With this work, we explore the unique potential of data visualization on novel foldable mobile devices (foldables). Even though foldables are already commercially available, there is limited knowledge of how to leverage their distinct characteristics for visualization. This gap will only grow as their form factors become increasingly diverse. To address this, we use a two-step approach. First, we present a device-centered design space, structured around physical and usage properties of foldable devices. Second, we introduce a conceptual framework that investigates visualization on foldables from four complementary perspectives: More Displays - distributing multiple views to leverage additional display space; More Shapes - mapping visualizations to spatial fold states; More Interactions - coupling visualization tasks and folding interactions; and More States - enabling responsive visualization through folding. We complement the design space and conceptual framework with a low-fidelity ideation workshop and the subsequent prototyping of interactive artifacts. We reflect on the results and lessons learned from our exploratory, design-driven process and discuss opportunities and challenges, including the gap between our proposed concepts and commercially available foldable devices. By providing conceptual foundations and illustrating the potential of foldables, we hope to inspire and inform the development of future visualization applications for this evolving class of devices.
CommentsAuthor version of accepted full paper at IEEE VIS 2026