Alert button
Picture for Chengrun Yang

Chengrun Yang

Alert button

Long-form factuality in large language models

Add code
Bookmark button
Alert button
Apr 03, 2024
Jerry Wei, Chengrun Yang, Xinying Song, Yifeng Lu, Nathan Hu, Jie Huang, Dustin Tran, Daiyi Peng, Ruibo Liu, Da Huang, Cosmo Du, Quoc V. Le

Viaarxiv icon

Large Language Models as Optimizers

Add code
Bookmark button
Alert button
Sep 07, 2023
Chengrun Yang, Xuezhi Wang, Yifeng Lu, Hanxiao Liu, Quoc V. Le, Denny Zhou, Xinyun Chen

Figure 1 for Large Language Models as Optimizers
Figure 2 for Large Language Models as Optimizers
Figure 3 for Large Language Models as Optimizers
Figure 4 for Large Language Models as Optimizers
Viaarxiv icon

Resource-Constrained Neural Architecture Search on Tabular Datasets

Add code
Bookmark button
Alert button
Apr 15, 2022
Chengrun Yang, Gabriel Bender, Hanxiao Liu, Pieter-Jan Kindermans, Madeleine Udell, Yifeng Lu, Quoc Le, Da Huang

Figure 1 for Resource-Constrained Neural Architecture Search on Tabular Datasets
Figure 2 for Resource-Constrained Neural Architecture Search on Tabular Datasets
Figure 3 for Resource-Constrained Neural Architecture Search on Tabular Datasets
Figure 4 for Resource-Constrained Neural Architecture Search on Tabular Datasets
Viaarxiv icon

How Low Can We Go: Trading Memory for Error in Low-Precision Training

Add code
Bookmark button
Alert button
Jun 18, 2021
Chengrun Yang, Ziyang Wu, Jerry Chee, Christopher De Sa, Madeleine Udell

Figure 1 for How Low Can We Go: Trading Memory for Error in Low-Precision Training
Figure 2 for How Low Can We Go: Trading Memory for Error in Low-Precision Training
Figure 3 for How Low Can We Go: Trading Memory for Error in Low-Precision Training
Figure 4 for How Low Can We Go: Trading Memory for Error in Low-Precision Training
Viaarxiv icon

TenIPS: Inverse Propensity Sampling for Tensor Completion

Add code
Bookmark button
Alert button
Jan 01, 2021
Chengrun Yang, Lijun Ding, Ziyang Wu, Madeleine Udell

Figure 1 for TenIPS: Inverse Propensity Sampling for Tensor Completion
Figure 2 for TenIPS: Inverse Propensity Sampling for Tensor Completion
Figure 3 for TenIPS: Inverse Propensity Sampling for Tensor Completion
Figure 4 for TenIPS: Inverse Propensity Sampling for Tensor Completion
Viaarxiv icon

Low-Rank Tensor Recovery with Euclidean-Norm-Induced Schatten-p Quasi-Norm Regularization

Add code
Bookmark button
Alert button
Dec 07, 2020
Jicong Fan, Lijun Ding, Chengrun Yang, Madeleine Udell

Figure 1 for Low-Rank Tensor Recovery with Euclidean-Norm-Induced Schatten-p Quasi-Norm Regularization
Figure 2 for Low-Rank Tensor Recovery with Euclidean-Norm-Induced Schatten-p Quasi-Norm Regularization
Figure 3 for Low-Rank Tensor Recovery with Euclidean-Norm-Induced Schatten-p Quasi-Norm Regularization
Figure 4 for Low-Rank Tensor Recovery with Euclidean-Norm-Induced Schatten-p Quasi-Norm Regularization
Viaarxiv icon

Efficient AutoML Pipeline Search with Matrix and Tensor Factorization

Add code
Bookmark button
Alert button
Jun 07, 2020
Chengrun Yang, Jicong Fan, Ziyang Wu, Madeleine Udell

Figure 1 for Efficient AutoML Pipeline Search with Matrix and Tensor Factorization
Figure 2 for Efficient AutoML Pipeline Search with Matrix and Tensor Factorization
Figure 3 for Efficient AutoML Pipeline Search with Matrix and Tensor Factorization
Figure 4 for Efficient AutoML Pipeline Search with Matrix and Tensor Factorization
Viaarxiv icon

Robust Non-Linear Matrix Factorization for Dictionary Learning, Denoising, and Clustering

Add code
Bookmark button
Alert button
May 04, 2020
Jicong Fan, Chengrun Yang, Madeleine Udell

Figure 1 for Robust Non-Linear Matrix Factorization for Dictionary Learning, Denoising, and Clustering
Figure 2 for Robust Non-Linear Matrix Factorization for Dictionary Learning, Denoising, and Clustering
Figure 3 for Robust Non-Linear Matrix Factorization for Dictionary Learning, Denoising, and Clustering
Figure 4 for Robust Non-Linear Matrix Factorization for Dictionary Learning, Denoising, and Clustering
Viaarxiv icon

OBOE: Collaborative Filtering for AutoML Initialization

Add code
Bookmark button
Alert button
Aug 09, 2018
Chengrun Yang, Yuji Akimoto, Dae Won Kim, Madeleine Udell

Figure 1 for OBOE: Collaborative Filtering for AutoML Initialization
Figure 2 for OBOE: Collaborative Filtering for AutoML Initialization
Figure 3 for OBOE: Collaborative Filtering for AutoML Initialization
Figure 4 for OBOE: Collaborative Filtering for AutoML Initialization
Viaarxiv icon