Utility-based performance evaluation of biometric sample quality assessment algorithms
Autor(en):
Zusammenfassung
The quality score of a biometric sample is expected to predict the sample’s utility, but a
universally valid definition of utility is missing. A harmonized definition of utility would be useful to
facilitate the comparison of biometric sample quality assessment algorithms. This paper generalizes
the utility of a biometric sample as normalized difference between the means of non-mated and
mated comparison scores with respect to this sample. Using a face image data set, we show that
discarding samples with low utility scores determined in this way results in a rapidly declining false
non-match rate. The obtained utility scores can be used as ground-truth utility labels for training
biometric sample quality assessment algorithms and for summarizing their prediction performance
in a single plot and in a single figure of merit based on the proposed utility score definition.
- Vollständige Referenz
- BibTeX
Olaf Henniger, B. F.,
(2022).
Utility-based performance evaluation of biometric sample quality assessment algorithms.
In:
Brömme, A., Damer, N., Gomez-Barrero, M., Raja, K., Rathgeb, C., , ., Todisco, M. & Uhl, A.
(Hrsg.),
BIOSIG 2022.
Bonn:
Gesellschaft für Informatik e.V..
(S. 112-121).
DOI: 10.1109/BIOSIG55365.2022.9897037
@inproceedings{mci/Olaf Henniger2022,
author = {Olaf Henniger, Biying Fu and Cong Chen},
title = {Utility-based performance evaluation of biometric sample quality assessment algorithms},
booktitle = {BIOSIG 2022},
year = {2022},
editor = {Brömme, Arslan AND Damer, Naser AND Gomez-Barrero, Marta AND Raja, Kiran AND Rathgeb, Christian AND Sequeira Ana F. AND Todisco, Massimiliano AND Uhl, Andreas} ,
pages = { 112-121 } ,
doi = { 10.1109/BIOSIG55365.2022.9897037 },
publisher = {Gesellschaft für Informatik e.V.},
address = {Bonn}
}
author = {Olaf Henniger, Biying Fu and Cong Chen},
title = {Utility-based performance evaluation of biometric sample quality assessment algorithms},
booktitle = {BIOSIG 2022},
year = {2022},
editor = {Brömme, Arslan AND Damer, Naser AND Gomez-Barrero, Marta AND Raja, Kiran AND Rathgeb, Christian AND Sequeira Ana F. AND Todisco, Massimiliano AND Uhl, Andreas} ,
pages = { 112-121 } ,
doi = { 10.1109/BIOSIG55365.2022.9897037 },
publisher = {Gesellschaft für Informatik e.V.},
address = {Bonn}
}
| Dateien | Groesse | Format | Anzeige | |
|---|---|---|---|---|
| 11-BIOSIG_2022_paper_22.pdf | 614.9Kb | Öffnen |
Sollte hier kein Volltext (PDF) verlinkt sein, dann kann es sein, dass dieser aus verschiedenen Gruenden (z.B. Lizenzen oder Copyright) nur in einer anderen Digital Library verfuegbar ist. Versuchen Sie in diesem Fall einen Zugriff ueber die verlinkte DOI: 10.1109/BIOSIG55365.2022.9897037
Haben Sie fehlerhafte Angaben entdeckt? Sagen Sie uns Bescheid: Feedback abschicken
Mehr Information
ISBN: 978-3-88579-723-4
ISSN: 1617-5478
Datum: 2022
Sprache:
(en)
(en)
Typ: Text/Conference Paper

