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ViDX: Visual Diagnostics of Assembly Line Performance in Smart Factories

机译:ViDX:智能工厂中装配线性能的视觉诊断

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Visual analytics plays a key role in the era of connected industry (or industry 4.0, industrial internet) as modern machines and assembly lines generate large amounts of data and effective visual exploration techniques are needed for troubleshooting, process optimization, and decision making. However, developing effective visual analytics solutions for this application domain is a challenging task due to the sheer volume and the complexity of the data collected in the manufacturing processes. We report the design and implementation of a comprehensive visual analytics system, ViDX. It supports both real-time tracking of assembly line performance and historical data exploration to identify inefficiencies, locate anomalies, and form hypotheses about their causes and effects. The system is designed based on a set of requirements gathered through discussions with the managers and operators from manufacturing sites. It features interlinked views displaying data at different levels of detail. In particular, we apply and extend the Marey's graph by introducing a time-aware outlier-preserving visual aggregation technique to support effective troubleshooting in manufacturing processes. We also introduce two novel interaction techniques, namely the quantiles brush and samples brush, for the users to interactively steer the outlier detection algorithms. We evaluate the system with example use cases and an in-depth user interview, both conducted together with the managers and operators from manufacturing plants. The result demonstrates its effectiveness and reports a successful pilot application of visual analytics for manufacturing in smart factories.
机译:视觉分析在互联工业(或工业4.0,工业互联网)时代起着关键作用,因为现代机器和装配线会生成大量数据,并且需要有效的视觉探索技术来进行故障排除,过程优化和决策。但是,由于庞大的数量和制造过程中收集的数据的复杂性,为此应用程序领域开发有效的视觉分析解决方案是一项艰巨的任务。我们报告了综合视觉分析系统ViDX的设计和实施。它支持对装配线性能的实时跟踪和历史数据探索,以识别效率低下,定位异常并形成有关其原因和影响的假设。该系统是根据与制造现场的经理和操作员的讨论收集的一组要求设计的。它具有相互链接的视图,以不同的详细程度显示数据。尤其是,我们通过引入时间感知的离群值保留视觉聚合技术来应用和扩展Marey图,以支持在制造过程中进行有效的故障排除。我们还介绍了两种新颖的交互技术,即分位数画笔和样本画笔,以供用户交互式地控制离群值检测算法。我们通过示例用例和深入的用户访谈来评估该系统,并与制造工厂的经理和操作员一起进行。结果证明了其有效性,并报告了视觉分析在智能工厂中成功进行试生产的应用。

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