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wind222's Projects

adversarial icon adversarial

Code and hyperparameters for the paper "Generative Adversarial Networks"

awesome-rnn icon awesome-rnn

Recurrent Neural Network - A curated list of resources dedicated to RNN

brcn icon brcn

A unofficial implementation of paper method that 'Bidirectional Recurrent Convolutional Networks for Multi-Frame Super-Resolution'

caffe icon caffe

Caffe: a fast open framework for deep learning.

caffe-lowlevel icon caffe-lowlevel

Project for paper "Learning Recursive Filters for Low-Level Vision via a Hybrid Neural Network", ECCV 2016

convlstm icon convlstm

Spatio-temporal video autoencoder with convolutional LSTMs

cxxnet-clstm icon cxxnet-clstm

CLSTM? Supporting convolutional LSTM structure and end-to-end network training, in order to better understand video data.

deep_cnn icon deep_cnn

Deep convolution neural network project with TensorFlow

deepconvlstm icon deepconvlstm

Deep learning framework for wearable activity recognition based on convolutional and LSTM recurretn layers

deepface icon deepface

Face analysis mainly based on Caffe. At this time, face analysis tasks like detection, alignment and recognition have been done.

densenetcaffe icon densenetcaffe

Caffe code for Densely Connected Convolutional Networks (DenseNets)

dncnn icon dncnn

Beyond a Gaussian Denoiser: Residual Learning of Deep CNN for Image Denoising

face-hallucination-for-video-surveillance-graduation-project- icon face-hallucination-for-video-surveillance-graduation-project-

a novel face hallucination algorithm to synthesize a high-resolution face image from several low-resolution input face images. Face hallucination normally uses twomodels: a global parametricmodel which synthesizes the global face shapes from eigenfaces, and a local parametric model which enhances the local high frequency details.We follow a similar process to develop a robust face hallucination algorithm. First, we obtain eigenfaces from a number of low resolution face images segmented from a video sequence using a face tracking algorithm. Then we compute the difference between an interpolated low-resolution face and a mean face, and use this difference as the query to retrieve an approximate sparse eigenface representation. The eigenfaces are combined using the coefficients obtained from the sparse representation and added into the interpolated low-resolution face. In this way, the global shape of the interpolated low resolution face can be successfully enhanced. Second, we improve the example-based super-resolution method for local high frequency information enhancement. Our proposed algorithm uses the Approximate Nearest Neighbors (ANN) search method to find a number of nearest neighbors for a stack of queries, instead of finding the exact match for each low frequency patch. Median filtering is used to remove the noise from the nearest neighbors in order to enhance the signal. Our proposed algorithm uses a sparse representation and the ANN method to enhance both global face shape and local high frequency information while greatly improving the processing speed, as confirmed empirically.

frrn icon frrn

Full Resolution Residual Networks for Semantic Image Segmentation

fudanocr icon fudanocr

A toolbox of scene text detection and recognition

keras icon keras

Deep Learning library for Python. Convnets, recurrent neural networks, and more. Runs on Theano or TensorFlow.

mxnet-ssd icon mxnet-ssd

MXNet port of SSD: Single Shot MultiBox Object Detector. Reimplementation of https://github.com/weiliu89/caffe/tree/ssd

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