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Clustering by compression

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arxiv cs/0312044 v2 pith:QGZVEQ5K submitted 2003-12-19 cs.CV cond-mat.stat-mechcs.AIphysics.data-anq-bio.GNq-bio.QM

classification cs.CVcond-mat.stat-mechcs.AIphysics.data-anq-bio.GNq-bio.QM
keywords methoddistanceapplicationclusteringcompressionsimilarityareacompressor
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We present a new method for clustering based on compression. The method doesn't use subject-specific features or background knowledge, and works as follows: First, we determine a universal similarity distance, the normalized compression distance or NCD, computed from the lengths of compressed data files (singly and in pairwise concatenation). Second, we apply a hierarchical clustering method. The NCD is universal in that it is not restricted to a specific application area, and works across application area boundaries. A theoretical precursor, the normalized information distance, co-developed by one of the authors, is provably optimal but uses the non-computable notion of Kolmogorov complexity. We propose precise notions of similarity metric, normal compressor, and show that the NCD based on a normal compressor is a similarity metric that approximates universality. To extract a hierarchy of clusters from the distance matrix, we determine a dendrogram (binary tree) by a new quartet method and a fast heuristic to implement it. The method is implemented and available as public software, and is robust under choice of different compressors. To substantiate our claims of universality and robustness, we report evidence of successful application in areas as diverse as genomics, virology, languages, literature, music, handwritten digits, astronomy, and combinations of objects from completely different domains, using statistical, dictionary, and block sorting compressors. In genomics we presented new evidence for major questions in Mammalian evolution, based on whole-mitochondrial genomic analysis: the Eutherian orders and the Marsupionta hypothesis against the Theria hypothesis.

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Cited by 1 Pith paper

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  1. Assessing Human Editing Effort on LLM-Generated Texts via Compression-Based Edit Distance

    cs.CL 2024-12 conditional novelty 4.0 of 10

    A compression-based distance between original and edited AI text correlates with human editing time, but the metric is a known compression distance applied to a new task.

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