Meteoroid stream identification with HDBSCAN unsupervised clustering algorithm
Eloy Pe\~na-Asensio, Fabio Ferrari

TL;DR
This paper evaluates the HDBSCAN clustering algorithm for identifying meteoroid streams from observational data, demonstrating its advantages over traditional methods in terms of statistical coherence and robustness.
Contribution
It introduces HDBSCAN as a novel, unsupervised clustering approach for meteoroid stream identification, comparing its performance with the established CAMS look-up table method.
Findings
HDBSCAN confirms 39 streams with 21 aligning strongly with CAMS.
The ORBIT vector identifies 30 streams, 13 with high matching scores.
The eom method outperforms other cluster selection methods in accuracy.
Abstract
Accurate identification of meteoroid streams is central to understanding their origins and evolution. However, overlapping clusters and background noise hinder classification, an issue amplified for missions such as ESA's LUMIO that rely on meteor shower observations to infer lunar meteoroid impact parameters. This study evaluates the performance of the Hierarchical Density-Based Spatial Clustering of Applications with Noise (HDBSCAN) algorithm for unsupervised meteoroid stream identification, comparing its outcomes with the established Cameras for All-Sky Meteor Surveillance (CAMS) look-up table method. We analyze the CAMS Meteoroid Orbit Database v3.0 using three feature vectors: LUTAB (CAMS geocentric parameters), ORBIT (heliocentric orbital elements), and GEO (adapted geocentric parameters). HDBSCAN is applied with varying minimum cluster sizes and two cluster selection methods (eom…
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Taxonomy
TopicsAstro and Planetary Science · Planetary Science and Exploration · Atmospheric Ozone and Climate
