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A fully distributed hierarchical attribute-based encryption scheme

机译:基于完全分布的分层属性的加密方案

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摘要

With the development of cloud computing, many enterprises have been interested in outsourcing their data to cloud servers to decrease IT costs and rise capabilities of provided services. To afford confidentiality and fine-grained data access control, attribute-based encryption (ABE) was proposed and used in several cloud storage systems. However, scalability and flexibility in key delegation and user revocation mechanisms are primary issues in ABE systems. In this paper, we introduce the concept of a fully distributed revocable ciphertext-policy hierarchical ABE (FDR-CP-HABE) and design the first FDR-CP-HABE scheme. Our scheme offers a high level of flexibility and scalability in the key delegation and user revocation phases. Moreover, our scheme is efficient and provides lightweight computation in the decryption phase. Indeed, by exploiting a computation outsourcing technique, most of the operations are executed by the powerful cloud server, and very few computations are left to the users. Also, the storage cost on the user side is significantly decreased as compared to similar schemes. Furthermore, using the hardness assumption of DBDH problem, we prove that our scheme is adaptively secure in the standard model. Our security analyses and implementation results indicate that our scheme is efficient, secure, and scalable. (C) 2020 Elsevier B.V. All rights reserved.
机译:随着云计算的发展,许多企业一直有兴趣将其数据外包给云服务器,以减少提供服务的成本和上升能力。为了提供保密性和细粒度的数据访问控制,提出了基于属性的加密(ABE),并用于几个云存储系统。但是,关键委派和用户撤销机制中的可扩展性和灵活性是ABE系统的主要问题。在本文中,我们介绍了完全分布式revocable密文 - 策略分层ABE(FDR-CP-HABE)的概念,并设计了第一个FDR-CP哈默方案。我们的计划在关键代表团和用户撤销阶段提供了高度的灵活性和可扩展性。此外,我们的方案是有效的,并在解密阶段提供轻量级计算。实际上,通过利用计算外包技术,大多数操作由强大的云服务器执行,并且留给用户很少的计算。此外,与类似方案相比,用户侧的存储成本显着降低。此外,使用DBDH问题的硬度假设,我们证明我们的方案在标准模型中自适应地保护。我们的安全分析和实施结果表明,我们的计划是有效,安全和可扩展的。 (c)2020 Elsevier B.v.保留所有权利。

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