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DeepID-Net: multi-stage and deformable deep convolutional neural networks for object detection

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arxiv 1409.3505 v1 pith:UJWX4FOS submitted 2014-09-11 cs.CV

classification cs.CV
keywords detectionobjectdeepproposedmulti-stageconvolutionaldeformabledeformation
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abstract

In this paper, we propose multi-stage and deformable deep convolutional neural networks for object detection. This new deep learning object detection diagram has innovations in multiple aspects. In the proposed new deep architecture, a new deformation constrained pooling (def-pooling) layer models the deformation of object parts with geometric constraint and penalty. With the proposed multi-stage training strategy, multiple classifiers are jointly optimized to process samples at different difficulty levels. A new pre-training strategy is proposed to learn feature representations more suitable for the object detection task and with good generalization capability. By changing the net structures, training strategies, adding and removing some key components in the detection pipeline, a set of models with large diversity are obtained, which significantly improves the effectiveness of modeling averaging. The proposed approach ranked \#2 in ILSVRC 2014. It improves the mean averaged precision obtained by RCNN, which is the state-of-the-art of object detection, from $31\%$ to $45\%$. Detailed component-wise analysis is also provided through extensive experimental evaluation.

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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. Relation Distillation Networks for Video Object Detection

    cs.CV 2019-08 conditional novelty 6.0 of 10

    Relation Distillation Networks model object relations across video frames in two cascaded stages, achieving 84.7% mAP on ImageNet VID, the best reported result at publication time.

  2. Zero-Shot Crowd Behavior Recognition

    cs.CV 2019-08 conditional novelty 6.0 of 10

    A context-aware zero-shot learning model predicts novel crowd behavior attributes by weighting known-attribute video classifiers with word-vector co-occurrence estimates, improving over prior zero-shot baselines.

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