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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Attribute-Based Fully Homomorphic Encryption Scheme from Lattices with Short Ciphertext
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Attribute-Based Fully Homomorphic Encryption Scheme from Lattices with Short Ciphertext

机译:基于格子的基于属性的完全同性恋加密方案,与短密文的格子

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Attribute-based encryption (ABE) is a good choice for one-to-many communication and fine-grained access control of the encryption data in a cloud environment. Fully homomorphic encryption (FHE) allows cloud servers to make valid operations on encrypted data without decrypting. Attribute-based fully homomorphic encryption (ABFHE) from lattices not only combines the bilateral advantages/facilities of ABE and FHE but also can resist quantum attacks. However, in the most previous ABFHE schemes, the growth of ciphertext size usually depends on the total number of system’s attributes which leads to high communication overhead and long running time of encryption and decryption. In this paper, based on the LWE problem on lattices, we propose an attribute-based fully homomorphic scheme with short ciphertext. More specifically, by classifying the system’s attributes and using the special structure matrix in MP12, we remove the dependency of ciphertext size on system’s attributes and the ciphertext size is no longer increased with the total number of system’s attributes. In addition, by introducing the function in the homomorphic operations, we completely rerandomize the error term in the new ciphertext and have a very tight and simple error analysis using sub-Gaussianity. Besides, performance analysis shows that when and according to the parameter suggestion given by Micciancio and Dai et al., the size of ciphertext in our scheme is reduced by at least 73.3%, not to mention . The larger the , the more observable of our scheme. The short ciphertext in our construction can not only reduce the communication overhead but also reduce the running time of encryption and decryption. Finally, our scheme is proved to be secure in the standard model.
机译:基于属性的加密(ABE)是对云环境中的加密数据的一对多通信和细粒度访问控制的不错选择。完全同性恋加密(FHE)允许云服务器在未解密的情况下对加密数据进行有效操作。基于格子的基于属性的完全同性恋加密(ABFHE)不仅结合了ABE和FHE的双边优势/设施,而且可以抵抗量子攻击。然而,在最先前的ABFHE方案中,密文大小的增长通常取决于系统属性的总数,这导致高通信开销和加密时间长时间的加密时间。本文基于LWE在格子上的问题,我们提出了一种基于属性的完全同一性方案,简短的密文。更具体地,通过对系统的属性进行分类并在MP12中使用特殊结构矩阵,我们删除了系统属性上的密文大小的依赖性,密文大小不再随系统属性的总数而增加。此外,通过在同型操作中引入功能,我们完全重新展开了新的密文中的误差项,并使用子高斯具有非常紧张和简单的错误分析。此外,性能分析表明,根据Micciancio和Dai等人给出的参数建议,我们计划中的密文的大小减少了至少73.3%,更不用说。我们计划的越大,更可观察到的。我们施工中的短密文不仅可以减少通信开销,而且还可以减少加密和解密的运行时间。最后,我们的计划被证明是安全的标准模型。

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