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Yinuo Ren
Publication Activity (10 Years)
Years Active: 2020-2024
Publications (10 Years): 13
Top Topics
Dirichlet Process
Neural Network
Mumford Shah Functional
Diffusion Models
Top Venues
CoRR
AISTATS
MSML
J. Comput. Phys.
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Publications
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Yinuo Ren
,
Chao Ma
,
Lexing Ying
Understanding the Generalization Benefits of Late Learning Rate Decay.
CoRR
(2024)
Yinuo Ren
,
Tesi Xiao
,
Tanmay Gangwani
,
Anshuka Rangi
,
Holakou Rahmanian
,
Lexing Ying
,
Subhajit Sanyal
Multi-objective Optimization via Wasserstein-Fisher-Rao Gradient Flow.
AISTATS
(2024)
Haoxuan Chen
,
Yinuo Ren
,
Lexing Ying
,
Grant M. Rotskoff
Accelerating Diffusion Models with Parallel Sampling: Inference at Sub-Linear Time Complexity.
CoRR
(2024)
Yinuo Ren
,
Yiping Lu
,
Lexing Ying
,
Grant M. Rotskoff
Statistical Spatially Inhomogeneous Diffusion Inference.
AAAI
(2024)
Yinuo Ren
,
Chao Ma
,
Lexing Ying
Understanding the Generalization Benefits of Late Learning Rate Decay.
AISTATS
(2024)
Yinuo Ren
,
Yiping Lu
,
Lexing Ying
,
Grant M. Rotskoff
Statistical Spatially Inhomogeneous Diffusion Inference.
CoRR
(2023)
Yinuo Ren
,
Tesi Xiao
,
Tanmay Gangwani
,
Anshuka Rangi
,
Holakou Rahmanian
,
Lexing Ying
,
Subhajit Sanyal
Multi-Objective Optimization via Wasserstein-Fisher-Rao Gradient Flow.
CoRR
(2023)
Yinuo Ren
,
Feng Li
,
Yanfei Kang
,
Jue Wang
Infinite forecast combinations based on Dirichlet process.
ICDM (Workshops)
(2023)
Yinuo Ren
,
Feng Li
,
Yanfei Kang
,
Jue Wang
Infinite forecast combinations based on Dirichlet process.
CoRR
(2023)
Yinuo Ren
,
Hongli Zhao
,
Yuehaw Khoo
,
Lexing Ying
High-dimensional density estimation with tensorizing flow.
CoRR
(2022)
Ruo Li
,
Yinuo Ren
,
Yanli Wang
Hermite spectral method for Fokker-Planck-Landau equation modeling collisional plasma.
J. Comput. Phys.
434 (2021)
Haoya Li
,
Yuehaw Khoo
,
Yinuo Ren
,
Lexing Ying
A semigroup method for high dimensional committor functions based on neural network.
MSML
(2021)
Haoya Li
,
Yuehaw Khoo
,
Yinuo Ren
,
Lexing Ying
Solving for high dimensional committor functions using neural network with online approximation to derivatives.
CoRR
(2020)