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Efficient simulation and rendering of realistic motion of one-dimensional flexible objects

机译:一维柔性对象的逼真的运动的高效仿真和渲染

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In gross motion of flexible one-dimensional (1D) objects such as cables, ropes, chains, ribbons and hair, the assumption of constant length is realistic and reasonable. The motion of the object also appears more natural if the motion or disturbance given at one end attenuates along the length of the object. In an earlier work, variational calculus was used to derive natural and length-preserving transformation of planar and spatial curves and implemented for flexible 1D objects discretized with a large number of straight segments. This paper proposes a novel idea to reduce computational effort and enable real-time and realistic simulation of the motion of flexible 1D objects. The key idea is to represent the flexible 1D object as a spline and move the underlying control polygon with much smaller number of segments. To preserve the length of the curve to within a prescribed tolerance as the control polygon is moved, the control polygon is adaptively modified by subdivision and merging. New theoretical results relating the length of the curve and the angle between the adjacent segments of the control polygon are derived for quadratic and cubic splines. Depending on the prescribed tolerance on length error, the theoretical results are used to obtain threshold angles for subdivision and merging. Simulation results for arbitrarily chosen planar and spatial curves whose one end is subjected to generic input motions are provided to illustrate the approach. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在柔性一维(1D)对象(例如电缆,绳索,链,丝带和头发)的总体运动中,恒定长度的假设是现实和合理的。如果在一端给出的运动或干扰沿着对象的长度衰减,则对象的运动也会显得更自然。在较早的工作中,变分演算用于导出平面和空间曲线的自然且保留长度的变换,并针对离散有大量直线段的灵活一维对象实施。本文提出了一种新颖的想法,以减少计算工作量,并能够对柔性一维对象的运动进行实时和逼真的仿真。关键思想是将柔性1D对象表示为样条线,并以更少的段数移动基础控制多边形。为了在移动控制多边形时将曲线的长度保持在规定的公差内,可通过细分和合并来自适应地修改控制多边形。对于二次和三次样条曲线,得出了有关曲线长度和控制多边形相邻线段之间的角度的新理论结果。根据规定的长度误差公差,理论结果可用于获得细分和合并的阈值角度。提供了任意一端选择的平面和空间曲线的仿真结果,该曲线的一端受到了通用输入运动的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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