Alert button
Picture for Samarth Tripathi

Samarth Tripathi

Alert button

Evolving GANs: When Contradictions Turn into Compliance

Add code
Bookmark button
Alert button
Jun 18, 2021
Sauptik Dhar, Javad Heydari, Samarth Tripathi, Unmesh Kurup, Mohak Shah

Figure 1 for Evolving GANs: When Contradictions Turn into Compliance
Figure 2 for Evolving GANs: When Contradictions Turn into Compliance
Figure 3 for Evolving GANs: When Contradictions Turn into Compliance
Figure 4 for Evolving GANs: When Contradictions Turn into Compliance
Viaarxiv icon

Pruning Algorithms to Accelerate Convolutional Neural Networks for Edge Applications: A Survey

Add code
Bookmark button
Alert button
May 08, 2020
Jiayi Liu, Samarth Tripathi, Unmesh Kurup, Mohak Shah

Figure 1 for Pruning Algorithms to Accelerate Convolutional Neural Networks for Edge Applications: A Survey
Figure 2 for Pruning Algorithms to Accelerate Convolutional Neural Networks for Edge Applications: A Survey
Figure 3 for Pruning Algorithms to Accelerate Convolutional Neural Networks for Edge Applications: A Survey
Viaarxiv icon

Auptimizer -- an Extensible, Open-Source Framework for Hyperparameter Tuning

Add code
Bookmark button
Alert button
Nov 06, 2019
Jiayi Liu, Samarth Tripathi, Unmesh Kurup, Mohak Shah

Figure 1 for Auptimizer -- an Extensible, Open-Source Framework for Hyperparameter Tuning
Figure 2 for Auptimizer -- an Extensible, Open-Source Framework for Hyperparameter Tuning
Figure 3 for Auptimizer -- an Extensible, Open-Source Framework for Hyperparameter Tuning
Figure 4 for Auptimizer -- an Extensible, Open-Source Framework for Hyperparameter Tuning
Viaarxiv icon

On-Device Machine Learning: An Algorithms and Learning Theory Perspective

Add code
Bookmark button
Alert button
Nov 02, 2019
Sauptik Dhar, Junyao Guo, Jiayi Liu, Samarth Tripathi, Unmesh Kurup, Mohak Shah

Figure 1 for On-Device Machine Learning: An Algorithms and Learning Theory Perspective
Figure 2 for On-Device Machine Learning: An Algorithms and Learning Theory Perspective
Figure 3 for On-Device Machine Learning: An Algorithms and Learning Theory Perspective
Figure 4 for On-Device Machine Learning: An Algorithms and Learning Theory Perspective
Viaarxiv icon

Robust Neural Network Training using Periodic Sampling over Model Weights

Add code
Bookmark button
Alert button
May 14, 2019
Samarth Tripathi, Jiayi Liu, Unmesh Kurup, Mohak Shah

Figure 1 for Robust Neural Network Training using Periodic Sampling over Model Weights
Figure 2 for Robust Neural Network Training using Periodic Sampling over Model Weights
Figure 3 for Robust Neural Network Training using Periodic Sampling over Model Weights
Figure 4 for Robust Neural Network Training using Periodic Sampling over Model Weights
Viaarxiv icon

Make (Nearly) Every Neural Network Better: Generating Neural Network Ensembles by Weight Parameter Resampling

Add code
Bookmark button
Alert button
Jul 02, 2018
Jiayi Liu, Samarth Tripathi, Unmesh Kurup, Mohak Shah

Figure 1 for Make (Nearly) Every Neural Network Better: Generating Neural Network Ensembles by Weight Parameter Resampling
Figure 2 for Make (Nearly) Every Neural Network Better: Generating Neural Network Ensembles by Weight Parameter Resampling
Figure 3 for Make (Nearly) Every Neural Network Better: Generating Neural Network Ensembles by Weight Parameter Resampling
Figure 4 for Make (Nearly) Every Neural Network Better: Generating Neural Network Ensembles by Weight Parameter Resampling
Viaarxiv icon

Towards Deeper Generative Architectures for GANs using Dense connections

Add code
Bookmark button
Alert button
Apr 30, 2018
Samarth Tripathi, Renbo Tu

Figure 1 for Towards Deeper Generative Architectures for GANs using Dense connections
Figure 2 for Towards Deeper Generative Architectures for GANs using Dense connections
Figure 3 for Towards Deeper Generative Architectures for GANs using Dense connections
Viaarxiv icon

Multi-Modal Emotion recognition on IEMOCAP Dataset using Deep Learning

Add code
Bookmark button
Alert button
Apr 16, 2018
Samarth Tripathi, Homayoon Beigi

Figure 1 for Multi-Modal Emotion recognition on IEMOCAP Dataset using Deep Learning
Figure 2 for Multi-Modal Emotion recognition on IEMOCAP Dataset using Deep Learning
Figure 3 for Multi-Modal Emotion recognition on IEMOCAP Dataset using Deep Learning
Figure 4 for Multi-Modal Emotion recognition on IEMOCAP Dataset using Deep Learning
Viaarxiv icon