SLIM: Scalable Linkage of Mobility Data
Fuat Basik, Hakan Ferhatosmanoglu, Bugra Gedik
Abstract
We present a scalable solution to link entities across mobility datasets using their spatio-temporal information. This is a fundamental problem in many applications such as linking user identities for security, understanding privacy limitations of location based services, or producing a unified dataset from multiple sources for urban planning. Such integrated datasets are also essential for service providers to optimise their services and improve business intelligence. In this paper, we first propose a mobility based representation and similarity computation for entities. An efficient matching process is then developed to identify the final linked pairs, with an automated mechanism to decide when to stop the linkage. We scale the process with a locality-sensitive hashing (LSH) based approach that significantly reduces candidate pairs for matching. To realize the effectiveness and efficiency of our techniques in practice, we introduce an algorithm called SLIM. In the experimental evaluation, SLIM outperforms the two existing state-of-the-art approaches in terms of precision and recall. Moreover, the LSH-based approach brings two to four orders of magnitude speedup.
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Cited by top-tier papers2
- Spatial-Temporal Similarity for Trajectories with Location Noise and Sporadic SamplingGuanyao Li, Chih-Chieh Hung, Mengyun Liu, Linfei Pan et al.ICDE 2021 · 17 citations
- Correlation-Attention Masked Temporal Transformer for User Identity Linkage Using Heterogeneous Mobility DataZiang Yan, Xingyu Zhao, Hanqing Ma, Wei Chen et al.AAAI 2025 · 2 citations
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