Multimodal personal verification using likelihood ratio for the match score fusion

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Abstract

In this paper, the authors present a novel personal verification system based on the likelihood ratio test for fusion of match scores from multiple biometric matchers (face, fingerprint, hand shape, and palm print). In the proposed system, multimodal features are extracted by Zernike Moment (ZM). After matching, the match scores from multiple biometric matchers are fused based on the likelihood ratio test. A finite Gaussian mixture model (GMM) is used for estimating the genuine and impostor densities of match scores for personal verification. Our approach is also compared to some different famous approaches such as the support vector machine and the sum rule with min-max. The experimental results have confirmed that the proposed system can achieve excellent identification performance for its higher level in accuracy than different famous approaches and thus can be utilized for more application related to person verification.

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APA

Binh Tran, L., & Le, T. H. (2017). Multimodal personal verification using likelihood ratio for the match score fusion. Computational Intelligence and Neuroscience, 2017. https://doi.org/10.1155/2017/9345969

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