CVMar 13, 2025

Bayesian Prompt Flow Learning for Zero-Shot Anomaly Detection

arXiv:2503.10080v341 citationsh-index: 9Has CodeCVPR
Originality Incremental advance
AI Analysis

This addresses the problem of detecting anomalies like defects or tumors without labeled data for practitioners in industrial and medical fields, representing an incremental improvement over existing prompt-based methods.

The paper tackles the challenge of zero-shot anomaly detection by proposing Bayesian Prompt Flow Learning (Bayes-PFL), which models the prompt space as a learnable probability distribution to improve generalization on unseen categories, achieving superior performance on 15 industrial and medical datasets.

Recently, vision-language models (e.g. CLIP) have demonstrated remarkable performance in zero-shot anomaly detection (ZSAD). By leveraging auxiliary data during training, these models can directly perform cross-category anomaly detection on target datasets, such as detecting defects on industrial product surfaces or identifying tumors in organ tissues. Existing approaches typically construct text prompts through either manual design or the optimization of learnable prompt vectors. However, these methods face several challenges: 1) handcrafted prompts require extensive expert knowledge and trial-and-error; 2) single-form learnable prompts struggle to capture complex anomaly semantics; and 3) an unconstrained prompt space limits generalization to unseen categories. To address these issues, we propose Bayesian Prompt Flow Learning (Bayes-PFL), which models the prompt space as a learnable probability distribution from a Bayesian perspective. Specifically, a prompt flow module is designed to learn both image-specific and image-agnostic distributions, which are jointly utilized to regularize the text prompt space and improve the model's generalization on unseen categories. These learned distributions are then sampled to generate diverse text prompts, effectively covering the prompt space. Additionally, a residual cross-model attention (RCA) module is introduced to better align dynamic text embeddings with fine-grained image features. Extensive experiments on 15 industrial and medical datasets demonstrate our method's superior performance. The code is available at https://github.com/xiaozhen228/Bayes-PFL.

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