Experimental Evaluation of Fully Dynamic k-Means via Coresets
October 27, 2023 Β· Declared Dead Β· π Workshop on Algorithm Engineering and Experimentation
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Authors
Monika Henzinger, David Saulpic, Leonhard Sidl
arXiv ID
2310.18034
Category
cs.DS: Data Structures & Algorithms
Citations
0
Venue
Workshop on Algorithm Engineering and Experimentation
Last Checked
5 months ago
Abstract
For a set of points in $\mathbb{R}^d$, the Euclidean $k$-means problems consists of finding $k$ centers such that the sum of distances squared from each data point to its closest center is minimized. Coresets are one the main tools developed recently to solve this problem in a big data context. They allow to compress the initial dataset while preserving its structure: running any algorithm on the coreset provides a guarantee almost equivalent to running it on the full data. In this work, we study coresets in a fully-dynamic setting: points are added and deleted with the goal to efficiently maintain a coreset with which a k-means solution can be computed. Based on an algorithm from Henzinger and Kale [ESA'20], we present an efficient and practical implementation of a fully dynamic coreset algorithm, that improves the running time by up to a factor of 20 compared to our non-optimized implementation of the algorithm by Henzinger and Kale, without sacrificing more than 7% on the quality of the k-means solution.
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