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Fluid Sketches: Continuous Recognition and Morphing of Simple Hand-Drawn Shapes

机译:流体草图:连续识别和简单的手绘形状的变形

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We describe a new sketching interface in which shape recognition and morphing are tightly coupled. Raw input strokes are continuously morphed into ideal geometric shapes, even before the pen is lifted. By means of smooth and continual shape transformations the user is apprised of recognition progress and the appearance of the final shape, yet always retains a sense of control over the process. At each time t the system uses the trajectory traced out thus far by the pen coupled with the current appearance of the time-varying shape to classify the sketch as one of several pre-defined basic shapes. The recognition operation is performed using shape-specific fits based on least-squares or relaxation, which are continuously updated as the user draws. We describe the time-dependent transformation of the sketch, beginning with the raw pen trajectory, using a family of first-order ordinary differential equations that depend on time and the current shape of the sketch. Using this formalism, we describe several possible behaviors that result by varying the relative significance of new and old portions of a stroke, changing the "viscosity" of the morph, and enforcing different end conditions. A preliminary user study suggests that the new interface is particularly effective for rapidly constructing diagrams consisting of simple shapes.
机译:我们描述了一种新的草图界面,其中形状识别和变形紧密耦合。即使在笔被抬起之前,原始输入笔划也持续变形为理想的几何形状。通过平稳和连续的形状转换,用户了解识别进度和最终形状的外观,但总是保持对过程的控制感。在每个时间t,系统使用轨迹到目前为止耦合的轨迹与时变形的当前外观耦合,以将草图分类为几个预定义的基本形状之一。使用基于最小二乘或放松的形状特定的拟合来执行识别操作,这在用户绘制时连续更新。我们使用依赖于时间和草图的当前形状的一阶常微分方程,描述了从原始笔轨迹开始的时间依赖于草图的变换。使用这种形式主义,我们描述了通过改变行程的新和旧部分的相对意义,改变变形的“粘度”,并强制执行不同的最终条件来实现几种可能的行为。初步用户学习表明,新界面对于快速构建由简单形状组成的图表特别有效。

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