A "Piano Movers" Problem Reformulated

D. Wilson, J. Davenport, M. England, R. Bradford
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引用次数: 28

Abstract

It has long been known that cylindrical algebraic decompositions (CADs) can in theory be used for robot motion planning. However, in practice even the simplest examples can be too complicated to tackle. We consider in detail a ``Piano Mover's Problem'' which considers moving an infinitesimally thin piano (or ladder) through a right-angled corridor. Producing a CAD for the original formulation of this problem is still infeasible after 25 years of improvements in both CAD theory and computer hardware. We review some alternative formulations in the literature which use differing levels of geometric analysis before input to a CAD algorithm. Simpler formulations allow CAD to easily address the question of the existence of a path. We provide a new formulation for which both a CAD can be constructed and from which an actual path could be determined if one exists, and analyse the CADs produced using this approach for variations of the problem. This emphasises the importance of the precise formulation of such problems for CAD. We analyse the formulations and their CADs considering a variety of heuristics and general criteria, leading to conclusions about tackling other problems of this form.
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一个“钢琴搬运工”问题的重新表述
人们早就知道,圆柱代数分解(CADs)在理论上可以用于机器人的运动规划。然而,在实践中,即使是最简单的例子也可能太复杂而无法解决。我们详细考虑一个“钢琴搬运工的问题”,它考虑通过直角走廊移动一架极薄的钢琴(或梯子)。经过25年CAD理论和计算机硬件的改进,为这个问题的原始公式制作CAD仍然是不可行的。我们回顾了文献中的一些替代公式,这些公式在输入CAD算法之前使用不同水平的几何分析。更简单的公式允许CAD轻松地解决路径存在的问题。我们提供了一个新的公式,既可以构建CAD,也可以从中确定实际的路径,如果存在的话,并分析使用这种方法产生的CAD问题的变化。这就强调了精确表述这类问题对于CAD的重要性。我们分析公式和他们的cad考虑到各种启发式和一般标准,导致解决这种形式的其他问题的结论。
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