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A Visual Decision-Guided Tool: Integrating Optimization Programming into Geo-Data Visualization for Finding the Viable Shortest Path

机译:一种视觉决策工具:将优化编程集成到地理数据可视化中,以查找可行的最短路径

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We propose a Visual Decision-Guided Tool that integrates optimization programming into geo-data visualization to determine the best path for rescue and recovery missions. First, we will develop the Top-k Objected-oriented Smoothest Paths model which captures the object dynamics of geospatial temporal network in a terrain over a time horizon. These objects include stationary entities, mobile objects, and route segments. Second, we will extend the Smoothest Path Algorithm (SPA) to be a dynamic learning algorithm, i.e., the Time-varying Smoothest Path Algorithm, which integrates the object dynamics to learn the top-k smoothest routes at each instance of time. The main advantage offered by the SPA extension is its lower logarithmic time complexity, i.e., O(NlogN), where N is the number of nodes in a terrain. Finally, we will develop a new design of visual displays that enable military operators to analyze other crucial factors, such as vehicle types, weather severity, and soldiers' specialty levels, which are required to be interpreted by human perception, cognition, and knowledge to select the best path among the top-k smoothest routes at each instance of time for rescue and recovery missions.
机译:我们提出了一种视觉决策工具,将优化规划集成到地理数据可视化中,以确定救援和恢复任务的最佳路径。首先,我们将开发Top-K面向对象的最平滑的路径模型,它在一个时间范围内捕获地形上的地理空间网络的对象动态。这些对象包括静止实体,移动对象和路由段。其次,我们将将最新的路径算法(SPA)扩展为动态学习算法,即时变的最平滑的路径算法,它集成了对象动态,以了解每个时间实例的顶级最平滑的路由。 SPA扩展提供的主要优点是其较低的对数时间复杂度,即O(nlogn),其中n是地形中的节点数。最后,我们将开发一种新的视觉显示设计,使军事运营商能够分析其他至关重要的因素,例如车辆类型,天气严重程度和士兵的专业水平,这需要被人类感知,认知和知识解释在每种时间的Top-K最佳路径中选择最佳路径,用于救援和恢复任务的每个时间。

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