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Split-Ballot Voting: Everlasting Privacy with Distributed Trust

机译:分裂投票选举:分布式信任带来的永久隐私

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In this article, we propose a new voting protocol with several desirable security properties. The voting stage of the protocol can be performed by humans without computers; it provides every voter with the means to verify that all the votes were counted correctly (universal verifiability) while preserving ballot secrecy. The protocol has "everlasting privacy": Even a computationally unbounded adversary gains no information about specific votes from observing the protocol's output. Unlike previous protocols with these properties, this protocol distributes trust between two authorities: a single corrupt authority will not cause voter privacy to be breached. Finally, the protocol is receipt-free: A voter cannot prove how she voted even if she wants to do so. We formally prove the security of the protocol in the universal composability framework, based on number-theoretic assumptions.
机译:在本文中,我们提出了一种具有几个理想的安全属性的新的投票协议。该协议的投票阶段可以由没有计算机的人来完成;它为每个选民提供了一种手段,可以在确保投票保密的同时,核实所有选票均已正确计数(普遍可验证性)。该协议具有“永久的隐私权”:即使是在计算上不受限制的对手也无法通过观察协议的输出获得有关特定投票的信息。与具有这些属性的先前协议不同,此协议在两个权限之间分配信任:单个损坏的权限不会导致选民隐私受到侵犯。最后,该协议是无收据的:即使她想投票,选民也无法证明自己的投票方式。我们基于数论假设,在通用可组合性框架中正式证明了该协议的安全性。

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