English

Rock Climber Distance: Frogs versus Dogs

Computational Geometry 2019-06-20 v1

Abstract

The classical measure of similarity between two polygonal chains in Euclidean space is the Fr\'echet distance, which corresponds to the coordinated motion of two mobile agents along the chains while minimizing their maximum distance. As computing the Fr\'echet distance takes near-quadratic time under the Strong Exponential Time Hypothesis (SETH), we explore two new distance measures, called rock climber distance and kk-station distance, in which the agents move alternately in their coordinated motion that traverses the polygonal chains. We show that the new variants are equivalent to the Fr\'echet or the Hausdorff distance if the number of moves is unlimited. When the number of moves is limited to a given parameter kk, we show that it is NP-hard to determine the distance between two curves. We also describe a 2-approximation algorithm to find the minimum kk for which the distance drops below a given threshold.

Keywords

Cite

@article{arxiv.1906.08141,
  title  = {Rock Climber Distance: Frogs versus Dogs},
  author = {Hugo A. Akitaya and Leonie Ryvkin and Csaba D. Tóth},
  journal= {arXiv preprint arXiv:1906.08141},
  year   = {2019}
}
R2 v1 2026-06-23T09:58:06.356Z