论文标题
曲线参数调查的合奏的视觉灵敏度分析
A Visual Sensitivity Analysis for Parameter-Augmented Ensembles of Curves
论文作者
论文摘要
工程师和计算科学家通常通过重复解决方案的参数变化来研究其模拟的行为,例如边界值或初始条件。通过这样的仿真团,研究解决方案中的不确定性是各种输入参数的函数。数值模拟的解决方案通常是时间函数,空间图或时空输出。处理这种复杂输出的通常方法是将分析限制为时间/空间域中的几个探针。这导致功能输出(曲线)及其相关的输入参数的较小且更具处理性的合奏:曲线的增强集合。本文介绍了一种对这种增强合奏进行交互式探索和分析的系统。功能输出的描述性统计数据是通过主成分分析投影,内核密度估计和高密度区域的计算进行的。这使得功能分位数和离群值的计算成为可能。刷牙并链接系统的元素可以深入分析合奏。该系统允许使用功能性描述性统计,聚类检测,最后通过蜘蛛网图实现视觉灵敏度分析。我们提出两个合成示例,然后在工业用例中验证我们的方法,该案例涉及使用液压求解器进行海洋当前研究。
Engineers and computational scientists often study the behavior of their simulations by repeated solutions with variations in their parameters, which can be for instance boundary values or initial conditions. Through such simulation ensembles, uncertainty in a solution is studied as a function of the various input parameters. Solutions of numerical simulations are often temporal functions, spatial maps or spatio-temporal outputs. The usual way to deal with such complex outputs is to limit the analysis to several probes in the temporal/spatial domain. This leads to smaller and more tractable ensembles of functional outputs (curves) with their associated input parameters: augmented ensembles of curves. This article describes a system for the interactive exploration and analysis of such augmented ensembles. Descriptive statistics on the functional outputs are performed by Principal Component Analysis projection, kernel density estimation and the computation of High Density Regions. This makes possible the calculation of functional quantiles and outliers. Brushing and linking the elements of the system allows in-depth analysis of the ensemble. The system allows for functional descriptive statistics, cluster detection and finally for the realization of a visual sensitivity analysis via cobweb plots. We present two synthetic examples and then validate our approach in an industrial use-case concerning a marine current study using a hydraulic solver.