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Fine-Grained Vehicle Classification with Unsupervised Parts Co-occurrence Learning
{Hong Zhang Nilanjan Ray Sara Elkerdawy}

Abstract
Vehicle fine-grained classification is a challenging research problem with little attention in the field. In this paper, we propose a deep network architecture for vehicles fine-grained classification without the need of parts or 3D bounding boxes annotation. Co-occurrence layer (COOC) layer is exploited for unsupervised parts discovery. In addition, a two-step procedure with transfer learning and fine-tuning is utilized. This enables us to better fine-tune models with pre-trained weights on ImageNet in some layers while having random initialization in some others. Our model achieves 86.5% accuracy outperforming the state of the art methods in BoxCars116K by 4%. In addition, we achieve 95.5% and 93.19% on CompCars on both train-test splits, 70-30 and 50-50, outperforming the other methods by 4.5% and 8% respectively.
Benchmarks
| Benchmark | Methodology | Metrics |
|---|---|---|
| fine-grained-image-classification-on-2 | ResNet152 + COOC | Accuracy: 86.57% |
| fine-grained-image-classification-on-compcars | Resnet50 + COOC | Accuracy: 95.6% |
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