Papers › OverFeat: Integrated Recognition, Localization and Detection using Convolutional Networks

OverFeat: Integrated Recognition, Localization and Detection using Convolutional Networks

21 Dec 2013arXiv:1312.6229archive 2025-07-28

Pierre Sermanet, David Eigen, Xiang Zhang, Michael Mathieu, Rob Fergus, Yann Lecun

We present an integrated framework for using Convolutional Networks for classification, localization and detection. We show how a multiscale and sliding window approach can be efficiently implemented within a ConvNet. We also introduce a novel deep learning approach to localization by learning to predict object boundaries. Bounding boxes are then accumulated rather than suppressed in order to increase detection confidence. We show that different tasks can be learned simultaneously using a single shared network. This integrated framework is the winner of the localization task of the ImageNet Large Scale Visual Recognition Challenge 2013 (ILSVRC2013) and obtained very competitive results for the detection and classifications tasks. In post-competition work, we establish a new state of the art for the detection task. Finally, we release a feature extractor from our best model called OverFeat.

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sermanet/OverFeat mentioned on GitHubtorchNOASSERTION report
soumith/convnet-benchmarks mentioned on GitHubtorchMIT report
soumith/imagenet-multiGPU.torch mentioned on GitHubtorchBSD-2-Clause report
vohoaiviet/OverFeat-DeepNet mentioned on GitHubtorchNOASSERTION report

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General ClassificationImage ClassificationObject DetectionObject Recognition

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Methods

ConvolutionDense ConnectionsMax PoolingOverFeatRandom Horizontal FlipRandom Resized CropReLUSGD with MomentumSoftmaxWeight Decay

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