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Classification Confidence in Exploratory Learning: A User’s Guide
by
Salamon, Peter
, Segall, Anca M.
, Perry, Tyler
, Salamon, David
, An, Michelle
, Cantu, V. Adrian
, Edwards, Robert A.
in
Accuracy
/ Algorithms
/ Bioinformatics
/ Calibration
/ Classification
/ confidence calibration
/ Datasets
/ exploratory machine learning
/ Genomes
/ Machine learning
/ Probability
/ Proteins
/ top-label confidence calibration
2023
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Classification Confidence in Exploratory Learning: A User’s Guide
by
Salamon, Peter
, Segall, Anca M.
, Perry, Tyler
, Salamon, David
, An, Michelle
, Cantu, V. Adrian
, Edwards, Robert A.
in
Accuracy
/ Algorithms
/ Bioinformatics
/ Calibration
/ Classification
/ confidence calibration
/ Datasets
/ exploratory machine learning
/ Genomes
/ Machine learning
/ Probability
/ Proteins
/ top-label confidence calibration
2023
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Do you wish to request the book?
Classification Confidence in Exploratory Learning: A User’s Guide
by
Salamon, Peter
, Segall, Anca M.
, Perry, Tyler
, Salamon, David
, An, Michelle
, Cantu, V. Adrian
, Edwards, Robert A.
in
Accuracy
/ Algorithms
/ Bioinformatics
/ Calibration
/ Classification
/ confidence calibration
/ Datasets
/ exploratory machine learning
/ Genomes
/ Machine learning
/ Probability
/ Proteins
/ top-label confidence calibration
2023
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Classification Confidence in Exploratory Learning: A User’s Guide
Journal Article
Classification Confidence in Exploratory Learning: A User’s Guide
2023
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Overview
This paper investigates the post-hoc calibration of confidence for “exploratory” machine learning classification problems. The difficulty in these problems stems from the continuing desire to push the boundaries of which categories have enough examples to generalize from when curating datasets, and confusion regarding the validity of those categories. We argue that for such problems the “one-versus-all” approach (top-label calibration) must be used rather than the “calibrate-the-full-response-matrix” approach advocated elsewhere in the literature. We introduce and test four new algorithms designed to handle the idiosyncrasies of category-specific confidence estimation using only the test set and the final model. Chief among these methods is the use of kernel density ratios for confidence calibration including a novel algorithm for choosing the bandwidth. We test our claims and explore the limits of calibration on a bioinformatics application (PhANNs) as well as the classic MNIST benchmark. Finally, our analysis argues that post-hoc calibration should always be performed, may be performed using only the test dataset, and should be sanity-checked visually.
Publisher
MDPI AG
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