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Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things

机译:通过物联网中具有隐私保护的聚合身份验证和访问控制来保护智能健康

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摘要

With the rapid technological advancements in the Internet of Things (IoT), wireless communication and cloud computing, smart health is expected to enable comprehensive and qualified healthcare services. It is important to ensure security and efficiency in smart health. However, existing smart health systems still have challenging issues, such as aggregate authentication, fine-grained access control and privacy protection. In this paper, we address these issues by introducing SSH, a Secure Smart Health system with privacy-aware aggregate authentication and access control in IoT. In SSH, privacy-aware aggregate authentication is enabled by an anonymous certificateless aggregate signature scheme, in which users' identity information is protected based on symmetric encryption mechanisms. In addition, privacy-aware access control is based on anonymous attribute-based encryption technologies. Our formal security proofs indicate that SSH achieves batch authentication and non-repudiation under the Computational Diffie-Hellman assumption. Extensive experimental results and performance comparisons show that SSH is practical in terms of computation cost and communication overheads.
机译:随着物联网(IoT),无线通信和云计算技术的飞速发展,智能健康有望实现全面,合格的医疗服务。确保智能健康的安全性和效率非常重要。但是,现有的智能健康系统仍然具有挑战性的问题,例如聚合身份验证,细粒度的访问控制和隐私保护。在本文中,我们通过引入SSH来解决这些问题,SSH是一种安全智能健康系统,在物联网中具有隐私感知的聚合身份验证和访问控制。在SSH中,通过匿名无证书聚合签名方案启用了感知隐私的聚合身份验证,该方案中,基于对称加密机制保护了用户的身份信息。另外,隐私感知访问控制基于基于匿名属性的加密技术。我们的正式安全证明表明,SSH在计算Diffie-Hellman假设下实现了批量身份验证和不可否认性。大量的实验结果和性能比较表明,SSH在计算成本和通信开销方面很实用。

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