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Privacy preserving linkage using multiple match-keys.

S M Randall1, A P Brown1, A M Ferrante1

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This study introduces a new privacy-preserving record linkage protocol that combines the accuracy of Bloom filters with the privacy of anonymous linkage codes, offering improved data security.

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Area of Science:

  • Data linkage
  • Privacy-preserving techniques
  • Database security

Background:

  • Existing privacy-preserving linkage methods have limitations: anonymous linkage codes offer limited accuracy, while Bloom filters are vulnerable to frequency-based attacks.
  • There is a need for robust methods that balance data accuracy with privacy protection.

Purpose of the Study:

  • To present and evaluate a novel privacy-preserving record linkage protocol.
  • To combine the accuracy of Bloom filters with the privacy benefits of anonymous linkage codes.

Main Methods:

  • Developed a protocol using multiple match-keys per record, with key composition tailored to dataset attributes.
  • Evaluated the protocol via de-duplication of administrative and synthetic datasets, comparing results against un-encoded linkage and other privacy-preserving techniques.

Main Results:

  • The multiple match-key protocol demonstrated high linkage quality across diverse datasets.
  • Performance surpassed record-level Bloom filters and the standard linkage key (SLK), though it was outperformed by field-level Bloom filters.

Conclusions:

  • The novel protocol achieves high linkage quality while mitigating frequency-based attacks inherent in Bloom filter methods.
  • This approach shows significant promise for practical applications in real-world data linkage scenarios.