Motivated by blockchain technology for supply-chain tracing of ethically sourced diamonds, we study geometric polyhedral point-set pattern matching as minimum-width polyhedral annulus problems under translations and rotations. We provide two (1+ε)-approximation schemes under translations with O(ε−dn)-time for d dimensions and O(nlogε−1+ε−2)-time for two dimensions, and we give an O(fd−1ε1−2dn)-time algorithm when also allowing for rotations, parameterized on f, which we define as the slimness of the point set.
@article{arxiv.2208.05597,
title = {Diamonds are Forever in the Blockchain: Geometric Polyhedral Point-Set Pattern Matching},
author = {Gill Barequet and Shion Fukuzawa and Michael T. Goodrich and David M. Mount and Martha C. Osegueda and Evrim Ozel},
journal= {arXiv preprint arXiv:2208.05597},
year = {2022}
}
Comments
8 pages, 5 figures, To appear in 34th Canadian Conference on Computational Geometry