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Cryptanalysis and improvement of the novel quantum scheme for secure two-party distance computation

机译:固定双方距离计算新型量子方案的密码分析与改进

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Secure multiparty computational geometry is a vital field of secure multiparty computation, which computes a computation geometric problem without revealing any private information of each party. A recent paper proposed a scheme about a novel quantum scheme for secure two-party distance computation. We cryptanalyze the scheme in the following three aspects: (1) There exists an entangle-and-measure attack method for Bob to detect Alice's location with a probability of 50% and the attack cannot be detected whether this attack is successful or not. (2) There is a loophole for Alice to get more information if she submits a different point in the second chance. The amount of information exposed by Bob is unacceptable. (3) In the definition of S2PDC, only Alice can get the distance between both positions while Bob gets nothing. However, under some circumstances, as a participant in the scheme, Bob has right to get the distance. Above all, we have improved the agreement from different items: (1) Security: the improved scheme can defend our new type attack based on the original security. (2) Fairness: The amount of information leaked by Bob is minimum in the new scheme. (3) Symmetric: Our scheme allows that both parties can get the distance from the scheme directly. (4) Efficiency: The information complexity of the new scheme is no more than the former one.
机译:安全多方计算几何是安全多方计算的重要领域,其计算了计算几何问题而不显示每个方的任何私人信息。最近的一篇论文提出了一种关于安全双方距离计算的新量子方案的方案。我们在以下三个方面加上该方案:(1)鲍勃存在一个纠缠和测量攻击方法,以检测Alice的位置,概率为50%,无法检测到此攻击是否成功的攻击。 (2)如果她在第二次机会中提交不同的观点,有一个漏洞可以获得更多信息。鲍勃暴露的信息量是不可接受的。 (3)在S2PDC的定义中,只有Alice只能获得两个位置之间的距离,而鲍勃没有。但是,在某些情况下,作为该计划的参与者,Bob有权获得距离。最重要的是,我们改进了不同物品的协议:(1)安全:改进的方案可以根据原始安全保护我们的新型攻击。 (2)公平:新计划中鲍勃泄露的信息量最低。 (3)对称:我们的计划允许双方直接从该方案获得距离。 (4)效率:新方案的信息复杂性不超过前一个。

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