English

Dimension reduction techniques for $\ell_p$, $1 \le p \le 2$, with applications

Computational Geometry 2015-12-08 v3

Abstract

For Euclidean space (2\ell_2), there exists the powerful dimension reduction transform of Johnson and Lindenstrauss, with a host of known applications. Here, we consider the problem of dimension reduction for all p\ell_p spaces 1p21 \le p \le 2. Although strong lower bounds are known for dimension reduction in 1\ell_1, Ostrovsky and Rabani successfully circumvented these by presenting an 1\ell_1 embedding that maintains fidelity in only a bounded distance range, with applications to clustering and nearest neighbor search. However, their embedding techniques are specific to 1\ell_1 and do not naturally extend to other norms. In this paper, we apply a range of advanced techniques and produce bounded range dimension reduction embeddings for all of 1p21 \le p \le 2, thereby demonstrating that the approach initiated by Ostrovsky and Rabani for 1\ell_1 can be extended to a much more general framework. We also obtain improved bounds in terms of the intrinsic dimensionality. As a result we achieve improved bounds for proximity problems including snowflake embeddings and clustering.

Keywords

Cite

@article{arxiv.1408.1789,
  title  = {Dimension reduction techniques for $\ell_p$, $1 \le p \le 2$, with applications},
  author = {Yair Bartal and Lee-Ad Gottlieb},
  journal= {arXiv preprint arXiv:1408.1789},
  year   = {2015}
}
R2 v1 2026-06-22T05:22:59.197Z