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A method to visualize the evolution of multiple interacting spatial systems

机译:一种可视化多个交互空间系统演化的方法

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Integrated modeling approaches are being increasingly used to simulate the behavior of, and the interaction between, several interdependent systems. They are becoming more and more important in many fields, including, but not being limited to, civil engineering, hydrology and climate impact research. It is beneficial when using these approaches to be able to visualize both, the intermediary and final results of scenario-based analyses that are conducted in both, space and time. This requires appropriate visualization techniques that enable to efficiently navigate between multiple such scenarios. In recent years, several innovative visualization techniques have been developed that allow for such navigation purposes. These techniques, however, are limited to the representation of one system at a time. Improvements are possible with respect to the ability to visualize the results related to multiple scenarios for multiple interdependent spatio-temporal systems. To address this issue, existing multi-scenario navigation techniques based on small multiples and line graphs are extended by multiple system representations and inter-system impact representations. This not only allows to understand the evolution of the systems under consideration but also eases identifying events where one system influences another system significantly. In addition, the concept of selective branching is described that allows to remove otherwise redundant information from the visualization by considering the logical and temporal dependencies between these systems. This visualization technique is applied to a risk assessment methodology that allows to determine how different environmental systems (i.e. precipitation, flooding, and landslides) influence each other as well as how their impact on civil infrastructure affects society. The results of this work are concepts for improved visualization techniques for multiple interacting spatial systems. The successful validation with domain experts of the enhanced small multiples technique proved its usefulness in a use case scenario based on a risk assessment methodology. (C) 2016 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:集成建模方法正越来越多地用于模拟几个相互依赖的系统的行为以及它们之间的相互作用。在许多领域中,它们正变得越来越重要,包括但不限于土木工程,水文学和气候影响研究。使用这些方法能够可视化在空间和时间上进行的基于场景的分析的中间结果和最终结果都是有益的。这需要适当的可视化技术,以能够在多个此类方案之间进行有效导航。近年来,已经开发了几种创新的可视化技术,可以实现这种导航目的。但是,这些技术仅限于一次表示一个系统。可视化与多个相互依赖的时空系统的多个场景相关的结果的能力是可能的。为了解决这个问题,现有的基于小倍数和折线图的多场景导航技术通过多个系统表示和系统间影响表示进行了扩展。这不仅可以了解所考虑的系统的发展,而且还可以轻松地识别其中一个系统对另一系统有重大影响的事件。另外,描述了选择性分支的概念,该概念允许通过考虑这些系统之间的逻辑和时间依赖性来从可视化中删除其他多余的信息。将此可视化技术应用于风险评估方法,该方法可确定不同的环境系统(即降水,洪水和山体滑坡)如何相互影响以及它们对民用基础设施的影响如何影响社会。这项工作的结果是用于多个交互空间系统的改进可视化技术的概念。增强型小倍数技术领域专家的成功验证证明了其在基于风险评估方法的用例场景中的有用性。 (C)2016国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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