English

Stratifying High Dimensional Data Based on Proximity to the Convex Hull Boundary

Computational Geometry 2016-11-07 v1 Optimization and Control

Abstract

The convex hull of a set of points, CC, serves to expose extremal properties of CC and can help identify elements in CC of high interest. For many problems, particularly in the presence of noise, the true vertex set (and facets) may be difficult to determine. One solution is to expand the list of high interest candidates to points lying near the boundary of the convex hull. We propose a quadratic program for the purpose of stratifying points in a data cloud based on proximity to the boundary of the convex hull. For each data point, a quadratic program is solved to determine an associated weight vector. We show that the weight vector encodes geometric information concerning the point's relationship to the boundary of the convex hull. The computation of the weight vectors can be carried out in parallel, and for a fixed number of points and fixed neighborhood size, the overall computational complexity of the algorithm grows linearly with dimension. As a consequence, meaningful computations can be completed on reasonably large, high dimensional data sets.

Keywords

Cite

@article{arxiv.1611.01419,
  title  = {Stratifying High Dimensional Data Based on Proximity to the Convex Hull Boundary},
  author = {Lori Ziegelmeier and Michael Kirby and Chris Peterson},
  journal= {arXiv preprint arXiv:1611.01419},
  year   = {2016}
}
R2 v1 2026-06-22T16:42:19.862Z