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Election Verifiability for Helios under Weaker Trust Assumptions

Identifieur interne : 001F09 ( Hal/Curation ); précédent : 001F08; suivant : 001F10

Election Verifiability for Helios under Weaker Trust Assumptions

Auteurs : Véronique Cortier [France] ; David Galindo [France] ; Stephane Glondu [France] ; Malika Izabachène [France]

Source :

RBID : Hal:hal-01011294

English descriptors

Abstract

Most electronic voting schemes aim at providing verifiability: voters should trust the result without having to rely on some authorities. Actually, even a prominent voting system like Helios cannot fully achieve verifiability since a dishonest bulletin board may add ballots. This problem is called ballot stuffing. In this paper we give a definition of verifiability in the computational model to account for a malicious bulletin board that may add ballots. Next, we provide a generic construction that transforms a voting scheme that is verifiable against an honest bulletin board and an honest registration authority (weak verifiability) into a verifiable voting scheme under the weaker trust assumption that the registration authority and the bulletin board are not simultaneously dishonest (strong verifiability). This construction simply adds a registration authority that sends private credentials to the voters, and publishes the corresponding public credentials. We further provide simple and natural criteria that imply weak verifiability. As an application of these criteria, we formally prove the latest variant of Helios by Bernhard, Pereira and Warinschi weakly verifiable. By applying our generic construction we obtain a Helios-like scheme that has ballot privacy and strong verifiability (and thus prevents ballot stuffing). The resulting voting scheme, Helios-C, retains the simplicity of Helios and has been implemented and tested.

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Hal:hal-01011294

Le document en format XML

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<term>Helios</term>
<term>ballot privacy</term>
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<div type="abstract" xml:lang="en">Most electronic voting schemes aim at providing verifiability: voters should trust the result without having to rely on some authorities. Actually, even a prominent voting system like Helios cannot fully achieve verifiability since a dishonest bulletin board may add ballots. This problem is called ballot stuffing. In this paper we give a definition of verifiability in the computational model to account for a malicious bulletin board that may add ballots. Next, we provide a generic construction that transforms a voting scheme that is verifiable against an honest bulletin board and an honest registration authority (weak verifiability) into a verifiable voting scheme under the weaker trust assumption that the registration authority and the bulletin board are not simultaneously dishonest (strong verifiability). This construction simply adds a registration authority that sends private credentials to the voters, and publishes the corresponding public credentials. We further provide simple and natural criteria that imply weak verifiability. As an application of these criteria, we formally prove the latest variant of Helios by Bernhard, Pereira and Warinschi weakly verifiable. By applying our generic construction we obtain a Helios-like scheme that has ballot privacy and strong verifiability (and thus prevents ballot stuffing). The resulting voting scheme, Helios-C, retains the simplicity of Helios and has been implemented and tested.</div>
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<title xml:lang="en">Election Verifiability for Helios under Weaker Trust Assumptions</title>
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<forename type="first">Véronique</forename>
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<title xml:lang="en">Election Verifiability for Helios under Weaker Trust Assumptions</title>
<author role="aut">
<persName>
<forename type="first">Véronique</forename>
<surname>Cortier</surname>
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<forename type="first">David</forename>
<surname>Galindo</surname>
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<email>david.galindo-chacon@inria.fr</email>
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<forename type="first">Stephane</forename>
<surname>Glondu</surname>
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<forename type="first">Malika</forename>
<surname>Izabachène</surname>
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<date type="datePub">2014-06</date>
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<term xml:lang="en">voting protocols</term>
<term xml:lang="en">individual verifiability</term>
<term xml:lang="en">universal verifiability</term>
<term xml:lang="en">ballot stuffing</term>
<term xml:lang="en">ballot privacy</term>
<term xml:lang="en">Helios</term>
</keywords>
<classCode scheme="halDomain" n="info.info-cr">Computer Science [cs]/Cryptography and Security [cs.CR]</classCode>
<classCode scheme="halTypology" n="REPORT">Reports</classCode>
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<abstract xml:lang="en">Most electronic voting schemes aim at providing verifiability: voters should trust the result without having to rely on some authorities. Actually, even a prominent voting system like Helios cannot fully achieve verifiability since a dishonest bulletin board may add ballots. This problem is called ballot stuffing. In this paper we give a definition of verifiability in the computational model to account for a malicious bulletin board that may add ballots. Next, we provide a generic construction that transforms a voting scheme that is verifiable against an honest bulletin board and an honest registration authority (weak verifiability) into a verifiable voting scheme under the weaker trust assumption that the registration authority and the bulletin board are not simultaneously dishonest (strong verifiability). This construction simply adds a registration authority that sends private credentials to the voters, and publishes the corresponding public credentials. We further provide simple and natural criteria that imply weak verifiability. As an application of these criteria, we formally prove the latest variant of Helios by Bernhard, Pereira and Warinschi weakly verifiable. By applying our generic construction we obtain a Helios-like scheme that has ballot privacy and strong verifiability (and thus prevents ballot stuffing). The resulting voting scheme, Helios-C, retains the simplicity of Helios and has been implemented and tested.</abstract>
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