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Unified Anomaly Detection methods on Edge Device using Knowledge Distillation and Quantization

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arxiv 2407.02968 v1 pith:DMS4MAHK submitted 2024-07-03 cs.CV cs.AIcs.CCcs.ET

classification cs.CVcs.AIcs.CCcs.ET
keywords modelsdetectiondifferentunifiedanomalydeviceedgemulti-class
verification ladder T0 review T1 audit T2 compute T3 formal
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With the rapid advances in deep learning and smart manufacturing in Industry 4.0, there is an imperative for high-throughput, high-performance, and fully integrated visual inspection systems. Most anomaly detection approaches using defect detection datasets, such as MVTec AD, employ one-class models that require fitting separate models for each class. On the contrary, unified models eliminate the need for fitting separate models for each class and significantly reduce cost and memory requirements. Thus, in this work, we experiment with considering a unified multi-class setup. Our experimental study shows that multi-class models perform at par with one-class models for the standard MVTec AD dataset. Hence, this indicates that there may not be a need to learn separate object/class-wise models when the object classes are significantly different from each other, as is the case of the dataset considered. Furthermore, we have deployed three different unified lightweight architectures on the CPU and an edge device (NVIDIA Jetson Xavier NX). We analyze the quantized multi-class anomaly detection models in terms of latency and memory requirements for deployment on the edge device while comparing quantization-aware training (QAT) and post-training quantization (PTQ) for performance at different precision widths. In addition, we explored two different methods of calibration required in post-training scenarios and show that one of them performs notably better, highlighting its importance for unsupervised tasks. Due to quantization, the performance drop in PTQ is further compensated by QAT, which yields at par performance with the original 32-bit Floating point in two of the models considered.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Breaking the Bias: Recalibrating the Attention of Industrial Anomaly Detection

    cs.CV 2024-12 conditional novelty 5.0 of 10

    Quantization followed by fine-tuning with layer-wise bit-width allocation yields modest anomaly detection gains on industrial benchmarks, but comparison rests on an unofficial EfficientAD baseline.

  2. A Lightweight Edge-CNN-Transformer Model for Detecting Coordinated Cyber and Digital Twin Attacks in Cooperative Smart Farming

    cs.CR 2024-11 reject novelty 3.0 of 10

    A CNN-Transformer model with post-quantization compression is presented for detecting network attacks in cooperative smart farming, with claimed accuracies up to 97% on proprietary testbed data.

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