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Performance Improvements in Inner Product Encryption

Abstract

Consider a database that contains thousands of entries of the iris biometric. Each entry identifies an individual, so it is especially important that it remains secure. However, searching for entries among an encrypted database proves to be a security problem - how should one search encrypted data without leaking any information to a potential attacker? The proximity searchable encryption scheme, as discussed in the work by Cachet et al., uses the notions of inner product encryption developed by Kim et al.. In this paper, we will focus on the efficiency of these schemes. Specifically, how the symmetry of the bilinear pairing group effects the time required to execute a search

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OpenCommons at University of Connecticut

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Last time updated on 19/09/2023

This paper was published in OpenCommons at University of Connecticut.

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