Title
Counterfactually Fair Automatic Speech Recognition
Abstract
Widelyused automatic speech recognition (ASR) systems have been empirically demonstrated in various studies to be unfair, having higher error rates for some groups of users than others. One way to define fairness in ASR is to require that changing the demographic group affiliation of any individual (e.g., changing their gender, age, education or race) should not change the probability distribution across possible speech-to-text transcriptions. In the paradigm of counterfactual fairness, all variables independent of group affiliation (e.g., the text being read by the speaker) remain unchanged, while variables dependent on group affiliation (e.g., the speaker's voice) are counterfactually modified. Hence, we approach the fairness of ASR by training the ASR to minimize change in its outcome probabilities despite a counterfactual change in the individual's demographic attributes. Starting from the individualized counterfactual equal odds criterion, we provide relaxations to it and compare their performances for connectionist temporal classification (CTC) based end-to-end ASR systems. We perform our experiments on the Corpus of Regional African American Language (CORAAL) and the LibriSpeech dataset to accommodate for differences due to gender, age, education, and race. We show that with counterfactual training, we can reduce average character error rates while achieving lower performance gap between demographic groups, and lower error standard deviation among individuals.
Year
DOI
Venue
2021
10.1109/TASLP.2021.3126949
IEEE-ACM TRANSACTIONS ON AUDIO SPEECH AND LANGUAGE PROCESSING
Keywords
DocType
Volume
Training, Machine learning, Speech processing, Error analysis, Machine learning algorithms, Computational modeling, Transducers, Automatic speech recognition, speaker adaptation, fairness in machine learning, counterfactual fairness
Journal
29
Issue
ISSN
Citations 
1
2329-9290
0
PageRank 
References 
Authors
0.34
12
3
Name
Order
Citations
PageRank
Leda Sari153.52
Mark Hasegawa-Johnson21189112.85
Chang D. Yoo337545.88