Jian Wu (wujian16)

wujian16

Geek Repo

Company:Cornell

Location:NYC

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Jian Wu's repositories

Cornell-MOE

A Python library for the state-of-the-art Bayesian optimization algorithms, with the core implemented in C++.

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TwoStep-BayesOpt

NeurIPS 2019 Paper

chinese_chess_in_OCaml

CS 3110 Final Project

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DeepLearningImplementations

Implementation of recent Deep Learning papers

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TensorFlow-Examples

TensorFlow Tutorial and Examples for beginners

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autograd

Efficiently computes derivatives of numpy code.

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conda-moe

conda recipe for MOE (A global, black box optimization engine for real world metric optimization.)

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darts

Differentiable architecture search for convolutional and recurrent networks

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HPOlib

HPOlib is a hyperparameter optimization library. It provides a common interface to three state of the art hyperparameter optimization packages: SMAC, spearmint and hyperopt. This package is discontinued, please read the longer note in the info box below.

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hyperband

Tuning hyperparams fast with Hyperband

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hypergrad

Exploring differentiation with respect to hyperparameters

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keras

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

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learning-to-learn

Learning to Learn in TensorFlow

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Neural-Net-Bayesian-Optimization

We use a modified neural network instead of Gaussian process for Bayesian optimization.

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OpenAeroStruct

OpenAeroStruct is a lightweight tool to perform aerostructural optimization using OpenMDAO.

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reinforcement-learning-an-introduction

Python implementation of Reinforcement Learning: An Introduction

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RestaurantRevenuePrediction_ORIE6125

The Final Project of ORIE 6125

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RoBO

RoBO: a Robust Bayesian Optimization framework

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scikit-learn

scikit-learn: machine learning in Python

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sgmcmc

Stochastic Gradient MCMC algorithms implemented in theano (and autograd)

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taKG

supplementary materials for the taKG paper published at UAI 2019

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tensorflow

Computation using data flow graphs for scalable machine learning

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Theano

Theano is a Python library that allows you to define, optimize, and evaluate mathematical expressions involving multi-dimensional arrays efficiently. It can use GPUs and perform efficient symbolic differentiation.

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