Li Wang;Hong Zhong;Jie Cui;Jing Zhang;Lu Wei;Irina Bolodurina;Debiao He
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引用次数: 0
摘要
数据共享是车载 ad hoc 网络(VANET)的基本服务之一,它主要要求数据安全和访问控制,而基于密文策略属性的加密(CP-ABE)是一种很有前途的工具。然而,分布式 CP-ABE 的数据共享方案存在单点性能瓶颈和隐私泄露的问题。前者的原因是授权机构管理的属性集是不连贯的。后者是因为用户的身份和属性需要提交给权威机构,而权威机构的目标是将这些信息与解密密钥绑定以防串通。我们为 VANET 提出了一种保护隐私的分布式数据共享方案。该方案在分布式 CP-ABE 中引入了非对称群组密钥协议,实现了一个属性由多个机构管理,用户可以从群组中的任何一个机构获取与其身份绑定的属性密钥。为了满足保护隐私的要求,提出了一种用户匿名的密钥提取协议,实现了在不泄露用户身份和属性的情况下获取属性密钥。此外,还满足了部分策略隐藏的要求。最后,我们对提出的方案进行了分析和评估,结果表明我们的方案是安全高效的。
Privacy-Preserving and Secure Distributed Data Sharing Scheme for VANETs
Data sharing is one of the essential services of vehicular ad hoc networks (VANETs), which primarily requires data security and access control, and ciphertext-policy attribute-based encryption (CP-ABE) is a promising tool. However, data sharing schemes of distributed CP-ABE have concerns about the single-point performance bottleneck and privacy leakage. The factor for the former is that the authority manages a disjoint attribute set. The latter is because the user's identity and attributes are required to submit to authorities, which targets to bind this information to decryption keys for collusion-resistant. We propose a privacy-preserving distributed data sharing scheme for VANETs. This scheme introduces asymmetric group key agreement to distributed CP-ABE, which realizes that multiple authorities manage an attribute, and the user can obtain the attribute key bound with his identity from any authority in the group. To match up to the requirement of privacy-preserving, a key extract protocol provided user anonymity is proposed, which implements that attribute keys can be obtained without revealing the user's identity and attributes. Moreover, partial policy hiding is satisfied. Finally, we analyze and evaluate the proposed scheme, and the results indicate that our scheme is secure and efficient.
期刊介绍:
IEEE Transactions on Mobile Computing addresses key technical issues related to various aspects of mobile computing. This includes (a) architectures, (b) support services, (c) algorithm/protocol design and analysis, (d) mobile environments, (e) mobile communication systems, (f) applications, and (g) emerging technologies. Topics of interest span a wide range, covering aspects like mobile networks and hosts, mobility management, multimedia, operating system support, power management, online and mobile environments, security, scalability, reliability, and emerging technologies such as wearable computers, body area networks, and wireless sensor networks. The journal serves as a comprehensive platform for advancements in mobile computing research.