触摸地面:评估数据物理化在空间数据分析任务中的有效性。

Bridger Herman;Cullen D. Jackson;Daniel F. Keefe
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摘要

受数字制造领域最新进展的启发,艺术家和科学家们已经证明,物理数据编码(即数据物理化)可以提高对数据的参与度,促进合作,在某些情况下,相对于数字替代品,还能提高数据的可读性和分析能力。然而,之前的实证研究只调查了以物理形式编码的抽象数据(如激光切割条形图),而没有调查与气候和医学科学相关的连续采样空间数据域(如在空间网格上采样的高度、温度、密度和速度)。本文介绍了第一项研究的设计和结果,该研究旨在描述人类在类似物理和数字可视化的三维空间数据分析任务中的表现。参与者通过三种可视化模式分析连续的空间高程数据:(1)二维数字可视化;(2)透视跟踪立体 "鱼缸 "虚拟现实;(3)三维打印数据物理化。他们的任务包括追踪下山路径、查找空间位置并比较其相对高度,以及识别和报告某些空间区域内的最小和最大高度。正如假设的那样,在大多数情况下,参与者在物理模式下完成任务的效果一样好,甚至更好(基于时间和误差指标)。其他结果包括对参与者开放式反馈的分析,以及对进一步研究数据物理化价值的意义的讨论。所有数据和补充材料可在 https://osf.io/7xdq4/ 网站上查阅。
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Touching the Ground: Evaluating the Effectiveness of Data Physicalizations for Spatial Data Analysis Tasks
Inspired by recent advances in digital fabrication, artists and scientists have demonstrated that physical data encodings (i.e., data physicalizations) can increase engagement with data, foster collaboration, and in some cases, improve data legibility and analysis relative to digital alternatives. However, prior empirical studies have only investigated abstract data encoded in physical form (e.g., laser cut bar charts) and not continuously sampled spatial data fields relevant to climate and medical science (e.g., heights, temperatures, densities, and velocities sampled on a spatial grid). This paper presents the design and results of the first study to characterize human performance in 3D spatial data analysis tasks across analogous physical and digital visualizations. Participants analyzed continuous spatial elevation data with three visualization modalities: (1) 2D digital visualization; (2) perspective-tracked, stereoscopic “fishtank” virtual reality; and (3) 3D printed data physicalization. Their tasks included tracing paths downhill, looking up spatial locations and comparing their relative heights, and identifying and reporting the minimum and maximum heights within certain spatial regions. As hypothesized, in most cases, participants performed the tasks just as well or better in the physical modality (based on time and error metrics). Additional results include an analysis of open-ended feedback from participants and discussion of implications for further research on the value of data physicalization. All data and supplemental materials are available at https://osf.io/7xdq4/.
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Preface Table of Contents VIS 2024 Executive Committee VIS 2024 Program Committee 2024 VGTC Visualization Technical Achievement Award
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