Cross-Camera Cow Identification via Disentangled Representation Learning
Runcheng Wang, Yaru Chen, Guiguo Zhang, Honghua Jiang, Yongliang Qiao

TL;DR
This paper introduces a novel cross-camera cow identification framework using disentangled representation learning, significantly enhancing recognition accuracy across diverse camera setups in real-world farming environments.
Contribution
It proposes a principle-driven feature disentanglement method based on SIG theory, improving cross-camera generalization in bovine visual recognition.
Findings
Achieved an average accuracy of 86.0% across seven cross-camera tasks.
Outperformed baseline methods with a significant margin.
Constructed a diverse dataset with five camera nodes for evaluation.
Abstract
Precise identification of individual cows is a fundamental prerequisite for comprehensive digital management in smart livestock farming. While existing animal identification methods excel in controlled, single-camera settings, they face severe challenges regarding cross-camera generalization. When models trained on source cameras are deployed to new monitoring nodes characterized by divergent illumination, backgrounds, viewpoints, and heterogeneous imaging properties, recognition performance often degrades dramatically. This limits the large-scale application of non-contact technologies in dynamic, real-world farming environments. To address this challenge, this study proposes a cross-camera cow identification framework based on disentangled representation learning. This framework leverages the Subspace Identifiability Guarantee (SIG) theory in the context of bovine visual recognition.…
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Taxonomy
TopicsFood Supply Chain Traceability · Animal Behavior and Welfare Studies · Effects of Environmental Stressors on Livestock
