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An energy efficient privacy-preserving content sharing scheme in mobile social networks

机译:移动社交网络中一种节能的隐私保护内容共享方案

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摘要

The rising popularity of mobile social media enables personalization of various content sharing and subscribing services. These two types of services entail serious privacy concerns not only to the confidentiality of shared content, but also to the privacy of end users such as their identities, interests and social relationships. Previous works established on the attribute-based encryption (ABE) can provide fine-grained access control of content. However, practical privacy-preserving content sharing in mobile social networks either incurs great risk of information leaking to unauthorized third parties or suffers from high energy consumption for decrypting privacy-preserving content. Motivated by these issues, this paper proposes a publish-subscribe system with secure proxy decryption (PSSPD) in mobile social networks. First, an effective self-contained privacy-preserving access control method is introduced to protect the confidentiality of the content and the credentials of users. This method is based on cipher-text-policy ABE and public-key encryption with keyword search. After that, a secure proxy decryption mechanism is proposed to reduce the heavy burdens of energy consumption on performing ciphertext decryption at end users. The experimental results demonstrate the efficiency and privacy preservation effectiveness of PSSPD.
机译:移动社交媒体的日益普及使得各种内容共享和订阅服务的个性化成为可能。这两类服务不仅引起共享内容的机密性的严重隐私问题,而且还涉及最终用户的隐私(例如其身份,兴趣和社会关系)。建立在基于属性的加密(ABE)上的先前工作可以提供对内容的细粒度访问控制。然而,在移动社交网络中的实际的保存隐私的内容共享或者招致信息泄露给未授权的第三方的巨大风险,或者遭受高能量消耗以解密保存隐私的内容。受这些问题的影响,本文提出了一种在移动社交网络中具有安全代理解密(PSSPD)的发布-订阅系统。首先,介绍了一种有效的自包含的隐私保护访问控制方法,以保护内容的机密性和用户的凭证。此方法基于密码文本策略ABE和带有关键字搜索的公钥加密。此后,提出了一种安全的代理解密机制,以减少在最终用户执行密文解密时的大量能源消耗。实验结果证明了PSSPD的有效性和隐私保护效果。

著录项

  • 来源
    《Personal and Ubiquitous Computing》 |2016年第5期|833-846|共14页
  • 作者单位

    Department of Computer Science, Georgia State University, AtlantaGA, 30303, USA;

    Department of Computer Science, Georgia State University, AtlantaGA, 30303, USA;

    College of Computer Science and Technology, Harbin Engineering University, Harbin 150001, China;

    Department of Computer Sciences, Georgia Southern University, Statesboro, GA 30460, USA;

    Beijing Key Laboratory of IOT Information Security Technology, Institute of Information Engineering, CAS, Beijing, China;

    Department of Computer Science, Georgia State University, AtlantaGA, 30303, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CP-ABE; PEKS; Proxy decryption; Bilinear maps; Threshold secret sharing scheme; Trapdoor;

    机译:CP-ABE;PEKS;代理解密;双线性图;门限秘密共享方案;活板门;

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