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Convex hull representations of models for computing collisions between multiple bodies

机译:用于计算多个物体之间的碰撞的模型的凸包表示形式

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摘要

In this paper, we consider a collision detection problem that frequently arises in the field of robotics. Given a set of bodies with their initial positions and trajectories, we wish to identify the first collision that occurs between any two bodies, or to determine that none exists. For the case of bodies having linear trajectories, we construct a convex hull representation of the integer programming model of S. Z. Selim and H. A. Almohamad [European Journal of Operational Research 119 (1) (1999) 121-129], and compare the relative effectiveness in solving this problem via the resultant linear program. We also extend this analysis to model a situation in which bodies move along piecewise linear trajectories, possibly rotating at the end of each linear segment. For this case, we again compare an integer programming approach with its linear programming convex hull representation, and exhibit the effectiveness of solving a sequence of mathematical programs for each time segment over a global programming scheme which considers all segments at once. We provide computational results to illustrate the effect of various numbers of bodies present in the collision scenarios, as well as the times at which the first collision occurs.
机译:在本文中,我们考虑了在机器人技术领域经常出现的碰撞检测问题。给定一组具有其初始位置和轨迹的物体,我们希望确定在任何两个物体之间发生的第一次碰撞,或者确定不存在任何碰撞。对于具有线性轨迹的物体,我们构造了SZ Selim和HA Almohamad的整数规划模型的凸包表示[European Journal of Operational Research 119(1)(1999)121-129],并比较了通过生成的线性程序解决此问题。我们还扩展了此分析以对物体沿分段线性轨迹移动(可能在每个线性段的末端旋转)的情况进行建模的情况。对于这种情况,我们再次将整数规划方法与其线性规划凸包表示法进行比较,并展示了在一次考虑所有区段的全局规划方案上为每个时间段求解一系列数学程序的有效性。我们提供计算结果来说明碰撞场景中存在的各种数量的物体的影响,以及第一次碰撞发生的时间。

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