Alert button
Picture for Peer-Timo Bremer

Peer-Timo Bremer

Alert button

Center for Applied Scientific Computing, Lawrence Livermore National Laboratory

AVA: Towards Autonomous Visualization Agents through Visual Perception-Driven Decision-Making

Add code
Bookmark button
Alert button
Dec 07, 2023
Shusen Liu, Haichao Miao, Zhimin Li, Matthew Olson, Valerio Pascucci, Peer-Timo Bremer

Viaarxiv icon

Cross-GAN Auditing: Unsupervised Identification of Attribute Level Similarities and Differences between Pretrained Generative Models

Add code
Bookmark button
Alert button
Mar 19, 2023
Matthew L. Olson, Shusen Liu, Rushil Anirudh, Jayaraman J. Thiagarajan, Peer-Timo Bremer, Weng-Keen Wong

Figure 1 for Cross-GAN Auditing: Unsupervised Identification of Attribute Level Similarities and Differences between Pretrained Generative Models
Figure 2 for Cross-GAN Auditing: Unsupervised Identification of Attribute Level Similarities and Differences between Pretrained Generative Models
Figure 3 for Cross-GAN Auditing: Unsupervised Identification of Attribute Level Similarities and Differences between Pretrained Generative Models
Figure 4 for Cross-GAN Auditing: Unsupervised Identification of Attribute Level Similarities and Differences between Pretrained Generative Models
Viaarxiv icon

Single Model Uncertainty Estimation via Stochastic Data Centering

Add code
Bookmark button
Alert button
Jul 14, 2022
Jayaraman J. Thiagarajan, Rushil Anirudh, Vivek Narayanaswamy, Peer-Timo Bremer

Figure 1 for Single Model Uncertainty Estimation via Stochastic Data Centering
Figure 2 for Single Model Uncertainty Estimation via Stochastic Data Centering
Figure 3 for Single Model Uncertainty Estimation via Stochastic Data Centering
Figure 4 for Single Model Uncertainty Estimation via Stochastic Data Centering
Viaarxiv icon

Identifying Orientation-specific Lipid-protein Fingerprints using Deep Learning

Add code
Bookmark button
Alert button
Jul 14, 2022
Fikret Aydin, Konstantia Georgouli, Gautham Dharuman, James N. Glosli, Felice C. Lightstone, Helgi I. Ingólfsson, Peer-Timo Bremer, Harsh Bhatia

Figure 1 for Identifying Orientation-specific Lipid-protein Fingerprints using Deep Learning
Figure 2 for Identifying Orientation-specific Lipid-protein Fingerprints using Deep Learning
Figure 3 for Identifying Orientation-specific Lipid-protein Fingerprints using Deep Learning
Figure 4 for Identifying Orientation-specific Lipid-protein Fingerprints using Deep Learning
Viaarxiv icon

Emerging Patterns in the Continuum Representation of Protein-Lipid Fingerprints

Add code
Bookmark button
Alert button
Jul 09, 2022
Konstantia Georgouli, Helgi I Ingólfsson, Fikret Aydin, Mark Heimann, Felice C Lightstone, Peer-Timo Bremer, Harsh Bhatia

Figure 1 for Emerging Patterns in the Continuum Representation of Protein-Lipid Fingerprints
Figure 2 for Emerging Patterns in the Continuum Representation of Protein-Lipid Fingerprints
Figure 3 for Emerging Patterns in the Continuum Representation of Protein-Lipid Fingerprints
Viaarxiv icon

Models Out of Line: A Fourier Lens on Distribution Shift Robustness

Add code
Bookmark button
Alert button
Jul 08, 2022
Sara Fridovich-Keil, Brian R. Bartoldson, James Diffenderfer, Bhavya Kailkhura, Peer-Timo Bremer

Figure 1 for Models Out of Line: A Fourier Lens on Distribution Shift Robustness
Figure 2 for Models Out of Line: A Fourier Lens on Distribution Shift Robustness
Figure 3 for Models Out of Line: A Fourier Lens on Distribution Shift Robustness
Figure 4 for Models Out of Line: A Fourier Lens on Distribution Shift Robustness
Viaarxiv icon

"Understanding Robustness Lottery": A Comparative Visual Analysis of Neural Network Pruning Approaches

Add code
Bookmark button
Alert button
Jun 16, 2022
Zhimin Li, Shusen Liu, Xin Yu, Kailkhura Bhavya, Jie Cao, Diffenderfer James Daniel, Peer-Timo Bremer, Valerio Pascucci

Figure 1 for "Understanding Robustness Lottery": A Comparative Visual Analysis of Neural Network Pruning Approaches
Figure 2 for "Understanding Robustness Lottery": A Comparative Visual Analysis of Neural Network Pruning Approaches
Figure 3 for "Understanding Robustness Lottery": A Comparative Visual Analysis of Neural Network Pruning Approaches
Figure 4 for "Understanding Robustness Lottery": A Comparative Visual Analysis of Neural Network Pruning Approaches
Viaarxiv icon

Geometric Priors for Scientific Generative Models in Inertial Confinement Fusion

Add code
Bookmark button
Alert button
Nov 24, 2021
Ankita Shukla, Rushil Anirudh, Eugene Kur, Jayaraman J. Thiagarajan, Peer-Timo Bremer, Brian K. Spears, Tammy Ma, Pavan Turaga

Figure 1 for Geometric Priors for Scientific Generative Models in Inertial Confinement Fusion
Figure 2 for Geometric Priors for Scientific Generative Models in Inertial Confinement Fusion
Figure 3 for Geometric Priors for Scientific Generative Models in Inertial Confinement Fusion
Figure 4 for Geometric Priors for Scientific Generative Models in Inertial Confinement Fusion
Viaarxiv icon

Transfer learning suppresses simulation bias in predictive models built from sparse, multi-modal data

Add code
Bookmark button
Alert button
Apr 19, 2021
Bogdan Kustowski, Jim A. Gaffney, Brian K. Spears, Gemma J. Anderson, Rushil Anirudh, Peer-Timo Bremer, Jayaraman J. Thiagarajan

Figure 1 for Transfer learning suppresses simulation bias in predictive models built from sparse, multi-modal data
Figure 2 for Transfer learning suppresses simulation bias in predictive models built from sparse, multi-modal data
Figure 3 for Transfer learning suppresses simulation bias in predictive models built from sparse, multi-modal data
Figure 4 for Transfer learning suppresses simulation bias in predictive models built from sparse, multi-modal data
Viaarxiv icon

Meaningful uncertainties from deep neural network surrogates of large-scale numerical simulations

Add code
Bookmark button
Alert button
Oct 26, 2020
Gemma J. Anderson, Jim A. Gaffney, Brian K. Spears, Peer-Timo Bremer, Rushil Anirudh, Jayaraman J. Thiagarajan

Figure 1 for Meaningful uncertainties from deep neural network surrogates of large-scale numerical simulations
Figure 2 for Meaningful uncertainties from deep neural network surrogates of large-scale numerical simulations
Figure 3 for Meaningful uncertainties from deep neural network surrogates of large-scale numerical simulations
Figure 4 for Meaningful uncertainties from deep neural network surrogates of large-scale numerical simulations
Viaarxiv icon