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Trust the biometrie mainstream: Multi-biometric fusion and score coherence

机译:相信生物特征主流:多生物融合和分数一致性

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Multi-biometrics aims at building more accurate unified biometric decisions based on the information provided by multiple biometric sources. Information fusion is used to optimize the process of creating this unified decision. In previous works dealing with score-level multi-biometric fusion, the scores of different biometric sources belonging to the comparison of interest are used to create the fused score. This is usually achieved by assigning static weights for the different biometric sources with more advanced solutions considering supplementary dynamic information like sample quality and neighbours distance ratio. This work proposes embedding score coherence information in the fusion process. This is based on our assumption that a minority of biometric sources, which points out towards a different decision than the majority, might have faulty conclusions and should be given relatively smaller role in the final decision. The evaluation was performed on the BioSecure multimodal biometric database with different levels of simulated noise. The proposed solution incorporates, and was compared to, three baseline static weighting approaches. The enhanced performance induced by including the coherence information within a dynamic weighting scheme in comparison to the baseline solution was shown by the reduction of the equal error rate by 45% to 85% over the different test scenarios and proved to maintain high performance when dealing with noisy data.
机译:多重生物计量技术旨在根据多个生物计量资源提供的信息,建立更准确的统一生物计量决策。信息融合用于优化创建此统一决策的过程。在处理分数级多生物融合的先前作品中,属于感兴趣比较的不同生物特征来源的分数用于创建融合分数。通常,这是通过考虑补充动态信息(例如样品质量和邻居距离比)的更高级解决方案,为不同的生物特征来源分配静态权重来实现的。这项工作提出在融合过程中嵌入分数相干信息。这是基于我们的假设,即少数生物特征来源指出的决定与多数生物特征决定不同,其结论可能有误,因此在最终决定中应被赋予相对较小的作用。评估是在BioSecure多模式生物特征数据库上执行的,其中模拟噪声的级别不同。提出的解决方案结合了三种基线静态加权方法,并与之进行了比较。与基准解决方案相比,通过在动态加权方案中包括相干信息而引起的增强性能通过在不同测试方案下将相等错误率降低了45%至85%来表明,并证明了在以下情况下可以保持高性能处理嘈杂的数据。

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