论文标题

自适应色彩从图像到地形可视化

Adaptive color transfer from images to terrain visualizations

论文作者

Wu, Mingguang, Sun, Yanjie, Jiang, Shangjing

论文摘要

地形映射不仅致力于传达景观的高度或陡峭程度,而且还可以帮助叙述我们对一个地方的感觉。但是,制作有效和表现力的催眠色调对于非秘书和专家来说都是挑战。在本文中,我们提出了一种两步的图像到距离色彩传递方法,该方法可以将颜色从任意图像传递到各种地形模型。首先,我们提出了一种新的图像颜色组织方法,该方法将离散的,不规则的图像颜色组织成连续的,常规的颜色网格,以促进一系列颜色操作,例如本地和全局搜索,分类颜色选择和顺序颜色插值。其次,我们量化了一系列有关高程颜色制作的主观问题,例如“较低,较高”原理,色彩惯例和空中透视。我们还通过美学质量定义了图像和地形可视化之间的颜色相似性。然后,我们将数学上的图像到孔子色传输作为双目标优化问题,并提供启发式搜索方法来解决该问题。最后,我们将方法的高程色调与四个测试地形上的标准配色方案进行了比较。评估表明,所提出方法的催眠色调可以与标准方案一样有效,并且我们的色调在视觉上更有利。我们还展示了我们的方法可以将情感从图像传递到地形可视化。

Terrain mapping is not only dedicated to communicating how high or how steep a landscape is but can also help to narrate how we feel about a place. However, crafting effective and expressive hypsometric tints is challenging for both nonexperts and experts. In this paper, we present a two-step image-to-terrain color transfer method that can transfer color from arbitrary images to diverse terrain models. First, we present a new image color organization method that organizes discrete, irregular image colors into a continuous, regular color grid that facilitates a series of color operations, such as local and global searching, categorical color selection and sequential color interpolation. Second, we quantify a series of subjective concerns about elevation color crafting, such as "the lower, the higher" principle, color conventions, and aerial perspectives. We also define color similarity between image and terrain visualization with aesthetic quality. We then mathematically formulate image-to-terrain color transfer as a dual-objective optimization problem and offer a heuristic searching method to solve the problem. Finally, we compare elevation tints from our method with a standard color scheme on four test terrains. The evaluations show that the hypsometric tints from the proposed method can work as effectively as the standard scheme and that our tints are more visually favorable. We also showcase that our method can transfer emotion from image to terrain visualization.

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