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Interactive Timeline Approach for Contextual Spatio-Temporal ECT Data Investigation

机译:互动时间表方法中语境时空 - 时空分类数据调查

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摘要

This paper presents a novel approach to a complex process of electrical capacitance tomography (ECT) measurement data analysis. ECT is frequently employed for non-invasive monitoring of industrial process phenomena. Proposed methodology is based on the premeditated integration of the spatial and temporal relations inherent in the measurement records into the workflow of the analysis procedure. We propose a concept of interactive timeline that enables arranging data visualization according to the user’s current focus along the process of analysis. We evaluated the proposed method using a prototype system in a task-based user study conducted with a group of domain experts. The evaluation is based on gravitational silo flow measurement datasets. Proposed prototype system enables diverse data manipulation in a more natural way allowing the user to switch back and forth between space and time domains along the data analysis trail. Experiments with the prototype system showed that the accuracy and completion times have significantly improved in comparison to the performance measured in the baseline condition. Additionally, the participants reported decreased physical load with improved efficiency measured with NASA task load index. Finally, a short discussion coupled with directions for the future of interactive spatio-temporal ECT measurement data analysis conclude the paper.
机译:本文介绍了一种新的电容断层扫描(ECT)测量数据分析过程的方法。经常用于工业过程现象的非侵入性监测。提出的方法是基于测量记录中固有的空间和时间关系的预先集成,进入分析程序的工作流程。我们提出了一种交互式时间线的概念,使得能够根据用户的当前沿着分析过程来安排数据可视化。我们在使用一组域专家进行的基于任务的用户学习中使用原型系统评估了所提出的方法。评估基于引力筒仓流量测量数据集。所提出的原型系统可以以更自然的方式实现不同的数据操作,允许用户沿数据分析跟踪来回切换空间和时间域之间。与原型系统的实验表明,与基线条件下测量的性能相比,准确性和完成时间显着改善。此外,参与者报告的物理负载减少,效率提高了NASA任务负载指数。最后,与交互式时空分析数据分析的未来未来的方向耦合的简短讨论得出了纸张。

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