Secure search scheme for encrypted data in the VANET cloud with random query trapdoor

Nayana Hegde, S. Manvi, H. Lallie
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Abstract

ABSTRACT Integration of the Vehicular Adhoc Network (VANET) with cloud computing has played an important role in aiding the safety of vehicle drivers and passengers. Due to the dynamic nature of the vehicles and wireless communication, achieving security of outsourced data is still a major challenge in the vehicular cloud. The encryption of sensitive data prior to outsourcing is an elementary approach to achieve data confidentiality. However, it is difficult for users to search over encrypted data using customary search techniques. In this paper, we propose a secure search scheme by empowering the data users to create a random query trapdoor. We make use of the bloom filter and bilinear pairing operation to construct a secure index for keywords of each data file, which enables the vehicular cloud to carry out a search without deriving any helpful information about the query. We use the SIMITS2 simulator to implement the proposed scheme and test the performance in terms of key generation time, secure index construction time, trapdoor generation time and search time. The proposed scheme performs better than existing searchable encryption technologies based on hashing and attribute-based encryption.
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车载自组织网络(VANET)与云计算的融合在帮助车辆驾驶员和乘客的安全方面发挥了重要作用。由于车辆和无线通信的动态性,实现外包数据的安全仍然是车载云的主要挑战。在外包前对敏感数据进行加密是实现数据保密性的基本方法。然而,用户很难使用常规搜索技术搜索加密数据。在本文中,我们提出了一种通过授权数据用户创建随机查询陷阱的安全搜索方案。我们利用bloom过滤器和双线性配对操作为每个数据文件的关键字构建安全索引,使车载云能够在不获取任何有用信息的情况下进行搜索。我们使用SIMITS2模拟器对所提出的方案进行了实现,并从密钥生成时间、安全索引构建时间、活板门生成时间和搜索时间等方面进行了性能测试。该方案优于现有的基于哈希和基于属性的可搜索加密技术。
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