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Privacy-Preserving Data Synchronization Using Tensor-Based Fully Homomorphic Encryption

机译:使用基于张量的全同态加密的隐私保护数据同步

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摘要

A connected environment brings a challenge of the privacy for data synchronizations as multiple unexpected/unpredictable parties maybe involved the process of the data usage. Outsourcing tasks results in data uncontrollability and privacy concerns, since service vendors generally have an access to the data stored in the server. Thus, unencrypted data in the third-party server are facing a threat of the privacy leakage due to various potential causes. In this paper, we focus on the privacy leakage issue in data synchronizations, more specifically speaking, to address designing a privacy-preserving method for data multi-storage with a homomorphism capability. The proposed scheme utilizes a tensor-based Fully Homomorphic Encryption (FHE) that balances privacy protections and functionalities. Design objectives are threefold: the proposed method can (i) protect data owners' privacy, (ii) support arithmetic operations, and (iii) achieve real-time data synchronization. The expected application scenario is synchronizing owner's data with remote servers in cloud computing. Both theoretical proofs and experiment evaluations have been processed in order to examine the adoptability and correctness of our approach.
机译:连通的环境给数据同步带来了隐私挑战,因为多个意外/不可预测的参与者可能涉及数据使用过程。外包任务导致数据不可控和隐私问题,因为服务供应商通常可以访问服务器中存储的数据。因此,由于各种潜在原因,第三方服务器中的未加密数据面临着隐私泄漏的威胁。在本文中,我们着眼于数据同步中的隐私泄漏问题,更具体地说,是解决针对具有同构能力的数据多存储设计隐私保护方法的问题。提出的方案利用了基于张量的完全同态加密(FHE),可以平衡隐私保护和功能。设计目标有三方面:提出的方法可以(i)保护数据所有者的隐私,(ii)支持算术运算,并且(iii)实现实时数据同步。预期的应用场景是在云计算中将所有者的数据与远程服务器同步。为了检验我们方法的可采纳性和正确性,已经进行了理论证明和实验评估。

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