Face Recognition Performance: Role of Demographic Information

Abstract

This paper studies the influence of demographics on the performance of face recognition algorithms. The recognition accuracies of six different face recognition algorithms (three commercial, two non-trainable, and one trainable) are computed on a large scale gallery that is partitioned so that each partition consists entirely of specific demographic cohorts. Eight total cohorts are isolated based on gender (male and female) race/ethnicity (Black, White, and Hispanic), and age group (18 to 30, 30 to 50, and 50 to 70 years old). Experimental results demonstrate that both commercial and the non-trainable algorithms consistently have lower matching accuracies on the same cohorts (females, Blacks, and age group 18 to 30). Additional experiments investigate the impact of the demographic distribution in the training set on the performance of a trainable face recognition algorithm. We show that the matching accuracy for race/ethnicity and age cohorts can be improved by training exclusively on that specific cohort. Operationally, this leads to a scenario, called dynamic face matcher selection, where multiple face recognition algorithms (each trained on different demographic cohorts), are available for a biometric system operator to select based on the demographic information extracted from a probe image. This procedure should lead to improved face recognition accuracy in many intelligence and law enforcement face recognition scenarios.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2012
Accession Number
ADA556941

Entities

People

  • Anil K. Jain
  • Brendan F. Klare
  • Joshua C. Klontz
  • Mark J. Burge
  • Richard W. Vorder Bruegge

Organizations

  • MITRE Corporation

Tags

Communities of Interest

  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Accuracy
  • Age Groups
  • Algorithms
  • Computer Science
  • Control Systems
  • Databases
  • Demographic Cohorts
  • Demography
  • Feature Extraction
  • Images
  • Information Science
  • Intelligence Community (United States)
  • Law Enforcement
  • Orientation (Direction)
  • Recognition
  • Sampling
  • Training

Readers

  • Computer Vision.
  • Instructional Design and Training Evaluation.
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Technology Areas

  • AI & ML