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Holistic deep learning
by
Boussioux, Léonard
, Bertsimas, Dimitris
, Villalobos Carballo, Kimberly
, Li, Michael Lingzhi
, Paskov, Alex
, Paskov, Ivan
in
Ablation
/ Accuracy
/ Artificial Intelligence
/ Computer Science
/ Control
/ Datasets
/ Decision making
/ Deep learning
/ Experiments
/ Machine Learning
/ Mechatronics
/ Natural Language Processing (NLP)
/ Neural networks
/ Operations management
/ Operations research
/ Robotics
/ Simulation and Modeling
/ Sparsity
/ Tables (data)
/ Value analysis
2024
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Holistic deep learning
by
Boussioux, Léonard
, Bertsimas, Dimitris
, Villalobos Carballo, Kimberly
, Li, Michael Lingzhi
, Paskov, Alex
, Paskov, Ivan
in
Ablation
/ Accuracy
/ Artificial Intelligence
/ Computer Science
/ Control
/ Datasets
/ Decision making
/ Deep learning
/ Experiments
/ Machine Learning
/ Mechatronics
/ Natural Language Processing (NLP)
/ Neural networks
/ Operations management
/ Operations research
/ Robotics
/ Simulation and Modeling
/ Sparsity
/ Tables (data)
/ Value analysis
2024
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Do you wish to request the book?
Holistic deep learning
by
Boussioux, Léonard
, Bertsimas, Dimitris
, Villalobos Carballo, Kimberly
, Li, Michael Lingzhi
, Paskov, Alex
, Paskov, Ivan
in
Ablation
/ Accuracy
/ Artificial Intelligence
/ Computer Science
/ Control
/ Datasets
/ Decision making
/ Deep learning
/ Experiments
/ Machine Learning
/ Mechatronics
/ Natural Language Processing (NLP)
/ Neural networks
/ Operations management
/ Operations research
/ Robotics
/ Simulation and Modeling
/ Sparsity
/ Tables (data)
/ Value analysis
2024
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Journal Article
Holistic deep learning
2024
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Overview
This paper presents a novel holistic deep learning framework that simultaneously addresses the challenges of vulnerability to input perturbations, overparametrization, and performance instability from different train-validation splits. The proposed framework holistically improves accuracy, robustness, sparsity, and stability over standard deep learning models, as demonstrated by extensive experiments on both tabular and image data sets. The results are further validated by ablation experiments and SHAP value analysis, which reveal the interactions and trade-offs between the different evaluation metrics. To support practitioners applying our framework, we provide a prescriptive approach that offers recommendations for selecting an appropriate training loss function based on their specific objectives. All the code to reproduce the results can be found at
https://github.com/kimvc7/HDL
.
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