Fully Homomorphic Encryption Scheme for Securing Cloud Data

Tara Al Attar, Mohammed Anwar MOHAMMED
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Abstract

One of the pioneer and important fields in the computer science area is cloud computing. The data within cloud computing are usually transformed to it from local storage; therefore, the security of this data is an important issue. To solve this data security issue, it is important that cloud service providers (CSPs) store encrypted versions of user data. Before transmitting data to the cloud provider, it was encrypted using traditional encryption schemes. Nevertheless, for these schemes, the private key must be provided to the server to be used for the decryption on the other side before any calculations, yielding a security risk and issue for the cloud data. Homomorphic encryption provides a capable solution to this issue since it enables calculations on encrypted data with no need to be decrypted and the private encryption key is not compromised. A new fully homomorphic encryption scheme to protect cloud data is proposed in this paper, it is called NAZUZ. The NAZUZ scheme is based on prime modular operations and encrypts messages by operating on each character without converting them to binary. NAZUZ security relies on the difficulty of factoring large integer numbers and introduces noise complexity to the plaintext through the number of CSP users.
云数据安全的全同态加密方案
云计算是计算机科学领域的先驱和重要领域之一。云计算中的数据通常是从本地存储转换到云计算的;因此,这些数据的安全性是一个重要的问题。为了解决这个数据安全问题,云服务提供商(csp)存储加密版本的用户数据非常重要。在将数据传输到云提供商之前,使用传统的加密方案对其进行加密。然而,对于这些方案,私钥必须提供给服务器,以便在进行任何计算之前用于另一方的解密,从而产生云数据的安全风险和问题。同态加密为这个问题提供了一个有效的解决方案,因为它可以在不需要解密的情况下对加密数据进行计算,并且不会危及私有加密密钥。本文提出了一种新的云数据全同态加密方案,称为NAZUZ。NAZUZ方案基于素数模块化操作,通过对每个字符进行操作而不将其转换为二进制来加密消息。NAZUZ安全性依赖于大整数分解的难度,并通过CSP用户的数量向明文引入噪声复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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12 weeks
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