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AR-RRNS: Configurable reliable distributed data storage systems for Internet of Things to ensure security

机译:AR-RRNS:用于物联网的可配置可靠分布式数据存储系统,以确保安全性

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摘要

Benefits of Internet of Things and cloud–fog-edge computing are associated with the risks of confidentiality, integrity, and availability related with the loss of information, denial of access for a long time, information leakage, conspiracy and technical failures. In this article, we propose a configurable, reliable, and confidential distributed data storage scheme with the ability to process encrypted data and control results of computations. Our system utilizes Redundant Residue Number System (RRNS) with new method of error correction codes and secret sharing schemes. We introduce the concept of an approximate value of a rank of a number (AR), which allows us to reduce the computational complexity of the decoding from RNS to binary representation, and size of the coefficients. Based on the properties of the approximate value and arithmetic properties of RNS, we introduce AR-RRNS method for error detection, correction, and controlling computational results. We provide a theoretical basis to configure probability of information loss, data redundancy, speed of encoding and decoding to cope with different objective preferences, workloads, and storage properties. Theoretical analysis shows that by appropriate selection of RRNS parameters, the proposed scheme allows not only increasing safety, reliability, and reducing an overhead of data storage, but also processing of encrypted data.
机译:物联网和云雾计算的优势与机密性,完整性和可用性风险有关,这些风险涉及信息丢失,长时间拒绝访问,信息泄漏,阴谋和技术故障。在本文中,我们提出了一种可配置,可靠且机密的分布式数据存储方案,该方案具有处理加密数据和控制计算结果的能力。我们的系统利用具有新的纠错码和秘密共享方案的方法来利用冗余残数系统(RRNS)。我们引入了数字秩(AR)的近似值的概念,这使我们能够减少从RNS到二进制表示的解码的计算复杂度以及系数的大小。基于RNS的近似值性质和算术性质,我们引入AR-RRNS方法进行错误检测,校正和控制计算结果。我们为配置信息丢失的概率,数据冗余,编码和解码的速度以应对不同的目标偏好,工作负载和存储属性提供了理论基础。理论分析表明,通过适当选择RRNS参数,该方案不仅可以提高安全性,可靠性并减少数据存储的开销,而且还可以处理加密数据。

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