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Coding solutions for the secure biometric storage problem

机译:安全生物识别存储问题的编码解决方案

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The paper studies the problem of securely storing biometric passwords, such as fingerprints and irises. With the help of coding theory Juels and Wattenberg derived in 1999 a scheme where similar input strings will be accepted as the same biometric. In the same time nothing could be learned from the stored data. They called their scheme a fuzzy commitment scheme. In this paper we will revisit the solution of Juels and Wattenberg and we will provide answers to two important questions: what type of error-correcting codes should be used and what happens if biometric templates are not uniformly distributed, i.e. the biometric data come with redundancy. Answering the first question will lead us to the search for low-rate large-minimum distance error-correcting codes which come with efficient decoding algorithms up to the designed distance. In order to answer the second question we relate the rate required with a quantity connected to the “entropy” of the string, trying to estimate a sort of “capacity”, if we want to see a flavor of the converse of Shannon's noisy coding theorem. Finally we deal with side-problems arising in a practical implementation and we propose a possible solution to the main one that seems to have so far prevented in many situations real life applications of the fuzzy scheme.
机译:本文研究了安全地存储生物识别密码的问题,例如指纹和虹膜。在1999年的编码理论的帮助下,Wattenberg衍生的一个方案,其中类似的输入字符串将被接受为相同的生物识别。同时无法从存储的数据中学习任何内容。他们称他们的计划是一个模糊的承诺计划。在本文中,我们将重新审视Juels和Wattenberg的解决方案,我们将提供两个重要问题的答案:应该使用哪种类型的纠错代码,如果生物识别模板不均匀分布,即生物识别数据冗余。回答第一个问题将导致我们寻找低速率的大量距离纠错码,其具有高效的解码算法到设计距离。为了回答第二个问题,我们将需要数量连接到字符串的“熵”所需的速率,试图估计某种“容量”,如果我们希望看到香农嘈杂的编码定理的谈话的味道。最后,我们处理在实际实施中产生的副问题,我们提出了一个可能的解决方案,似乎在许多情况下似乎在许多情况下防止了模糊方案的真实应用。

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