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Unbalanced private set intersection cardinality protocol with low communication cost

机译:通信成本低的不平衡私有集相交基数协议

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Private set intersection cardinality (PSI-CA) allows two parties, the sender and receiver, to compute the cardinality of the intersection, without revealing anything more to the other party. This paper focuses on the unbalanced private data sets case, where two parties hold sets of private data items, such as the users' identifiers: and where the size of the receiver's private data set is significantly smaller than the size of the sender's private data set. Two parties want to learn the cardinality of the intersection, but nothing else. The commutative encryption inspires authors to develop a novel protocol to solve the problem. Furthermore, by the application of the Bloom filter, the receiver can compute the output more easily than by the method that the encryption is carried out on the sender's private data set when low-power mobile IoT devices are used. In the semi-honest model, we can prove the security of our protocol when the sender's data set is big enough. The experiment shows the deviation of our protocol is negligible and the computation costs of our protocol. (C) 2019 Elsevier B.V. All rights reserved.
机译:专用集路口基数(PSI-CA)允许发送方和接收方两方计算路口的基数,而无需向对方透露更多信息。本文关注于不平衡的私有数据集的情况,其中两方持有私有数据项集,例如用户的标识符:并且接收者的私有数据集的大小显着小于发送者的私有数据集的大小。 。两方都想了解路口的基数,但别无其他。可交换加密启发作者开发一种新颖的协议来解决该问题。此外,通过使用布隆过滤器,与使用低功耗移动物联网设备时对发送方的私有数据集进行加密的方法相比,接收方可以更轻松地计算输出。在半诚实的模型中,当发件人的数据集足够大时,我们可以证明协议的安全性。实验表明,该协议的偏差可忽略不计,并且该协议的计算成本较高。 (C)2019 Elsevier B.V.保留所有权利。

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