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An Identity-Based Anti-Quantum Privacy-Preserving Blind Authentication in Wireless Sensor Networks

机译:无线传感器网络中基于身份的防量子隐私保密盲认证

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摘要

With the development of wireless sensor networks, IoT devices are crucial for the Smart City; these devices change people’s lives such as e-payment and e-voting systems. However, in these two systems, the state-of-art authentication protocols based on traditional number theory cannot defeat a quantum computer attack. In order to protect user privacy and guarantee trustworthy of big data, we propose a new identity-based blind signature scheme based on number theorem research unit lattice, this scheme mainly uses a rejection sampling theorem instead of constructing a trapdoor. Meanwhile, this scheme does not depend on complex public key infrastructure and can resist quantum computer attack. Then we design an e-payment protocol using the proposed scheme. Furthermore, we prove our scheme is secure in the random oracle, and satisfies confidentiality, integrity, and non-repudiation. Finally, we demonstrate that the proposed scheme outperforms the other traditional existing identity-based blind signature schemes in signing speed and verification speed, outperforms the other lattice-based blind signature in signing speed, verification speed, and signing secret key size.
机译:随着无线传感器网络的发展,物联网设备对于智慧城市至关重要。这些设备改变了人们的生活,例如电子支付和电子投票系统。但是,在这两个系统中,基于传统数论的最新身份验证协议无法击败量子计算机攻击。为了保护用户隐私并保证大数据的可信度,我们提出了一种基于数字定理研究单元格的基于身份的盲签名方案,该方案主要采用拒绝采样定理代替构造活板门。同时,该方案不依赖复杂的公钥基础结构,并且可以抵抗量子计算机攻击。然后我们使用提出的方案设计电子支付协议。此外,我们证明了我们的方案在随机预言机中是安全的,并且满足机密性,完整性和不可否认性。最后,我们证明了所提出的方案在签名速度和验证速度方面优于其他传统的基于身份的盲签名方案,在签名速度,验证速度和签名秘密密钥大小方面优于其他基于格的盲签名。

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