English

Hierarchical Clustering: $O(1)$-Approximation for Well-Clustered Graphs

Data Structures and Algorithms 2021-12-17 v1 Machine Learning

Abstract

Hierarchical clustering studies a recursive partition of a data set into clusters of successively smaller size, and is a fundamental problem in data analysis. In this work we study the cost function for hierarchical clustering introduced by Dasgupta, and present two polynomial-time approximation algorithms: Our first result is an O(1)O(1)-approximation algorithm for graphs of high conductance. Our simple construction bypasses complicated recursive routines of finding sparse cuts known in the literature. Our second and main result is an O(1)O(1)-approximation algorithm for a wide family of graphs that exhibit a well-defined structure of clusters. This result generalises the previous state-of-the-art, which holds only for graphs generated from stochastic models. The significance of our work is demonstrated by the empirical analysis on both synthetic and real-world data sets, on which our presented algorithm outperforms the previously proposed algorithm for graphs with a well-defined cluster structure.

Keywords

Cite

@article{arxiv.2112.09055,
  title  = {Hierarchical Clustering: $O(1)$-Approximation for Well-Clustered Graphs},
  author = {Bogdan-Adrian Manghiuc and He Sun},
  journal= {arXiv preprint arXiv:2112.09055},
  year   = {2021}
}

Comments

This work appeared at the 35th Conference on Neural Information Processing Systems (NeurIPS'21)

R2 v1 2026-06-24T08:20:48.873Z