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US Patent 10594688 Privacy-enhanced biometrics-secret binding scheme

Patent 10594688 was granted and assigned to Cross Match Technologies Limited on March, 2020 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Patent Applicant
Cross Match Technologies Limited
Cross Match Technologies Limited
Current Assignee
Cross Match Technologies Limited
Cross Match Technologies Limited
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10594688
Date of Patent
March 17, 2020
Patent Application Number
15062352
Date Filed
March 7, 2016
Patent Citations Received
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US Patent 12079371 Personal identifiable information encoder
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US Patent 11936790 Systems and methods for enhanced hash transforms
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US Patent 11967173 Face cover-compatible biometrics and processes for generating and using same
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US Patent 11972637 Systems and methods for liveness-verified, biometric-based encryption
0
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US Patent 10880298 Method for generating a key and access control method
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US Patent 11651060 Multi-factor fingerprint authenticator
0
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US Patent 11301586 Systems and processes for lossy biometric representations
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US Patent 11861043 Systems and processes for lossy biometric representations
0
...
Patent Primary Examiner
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Trong H Nguyen
Patent abstract

Generating a distinguishing feature vector by means of a distinguishing feature extractor module from a raw biometric feature of the individual, the distinguishing feature vector being configured for differentiating individuals is carried out in a method. Further steps include generating a robust feature vector by means of a robust feature extractor module from the raw biometric feature of the individual; generating a cryptographic key from first auxiliary data based on the secret of the individual and optionally other data; using the robust feature vector together with second auxiliary data in a standard cryptographic module configured to perform a standard cryptographic function keyed by the cryptographic key; and binding the results produced by the standard cryptographic module and the distinguishing feature vector together as fused data by means of a modulo-N addition operation module, wherein N=2, 3, . . . , i.e. N is an integer greater than 1.

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