简短声明:多方环境下外包数据的安全和隐私

Matteo Maffei, Giulio Malavolta, M. Reinert, Dominique Schröder
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引用次数: 1

摘要

云存储迅速受到用户的欢迎,为海量数据的备份、同步和共享提供了无缝解决方案。然而,这项技术将用户数据置于云服务提供商的直接控制之下,这引起了越来越多的安全和隐私问题,涉及外包数据的完整性、敏感信息的意外或故意泄露、用户活动的分析等。我们提出了GORAM,一个加密系统,保护外包给不受信任的服务器的数据的保密性和完整性,并保证连续访问这些数据的匿名性和不可链接性。GORAM允许数据库所有者与其他客户端共享外包数据,选择性地授予他们读写权限。GORAM是第一个为外包存储实现如此广泛的安全和隐私属性的系统。从技术上讲,GORAM建立在ORAM的组合之上,以隐藏数据访问,基于属性的加密以规则对外包数据的访问,零知识证明以保护隐私的方式证明读写权限。我们实现了GORAM并进行了实验评估以证明其可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brief announcement: towards security and privacy for outsourced data in the multi-party setting
Cloud storage has rapidly acquired popularity among users, constituting a seamless solution for the backup, synchronization, and sharing of large amounts of data. This technology, however, puts user data in the direct control of cloud service providers, which raises increasing security and privacy concerns related to the integrity of outsourced data, the accidental or intentional leakage of sensitive information, the profiling of user activities and so on. We present GORAM, a cryptographic system that protects the secrecy and integrity of the data outsourced to an untrusted server and guarantees the anonymity and unlinkability of consecutive accesses to such data. GORAM allows the database owner to share outsourced data with other clients, selectively granting them read and write permissions. GORAM is the first system to achieve such a wide range of security and privacy properties for outsourced storage. Technically, GORAM builds on a combination of ORAM to conceal data accesses, attribute-based encryption to rule the access to outsourced data, and zero-knowledge proofs to prove read and write permissions in a privacy-preserving manner. We implemented GORAM and conducted an experimental evaluation to demonstrate its feasibility.
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