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一种强不可伪造的无证书签名方案及其在物联网环境中的应用。

A Strongly Unforgeable Certificateless Signature Scheme and Its Application in IoT Environments.

作者信息

Yang Xiaodong, Pei Xizhen, Chen Guilan, Li Ting, Wang Meiding, Wang Caifen

机构信息

Computer Science and Engineering, Northwest Normal University, Lanzhou 730070, China.

出版信息

Sensors (Basel). 2019 Jun 14;19(12):2692. doi: 10.3390/s19122692.

Abstract

With the widespread application of the Internet of Things (IoT), ensuring communication security for IoT devices is of considerable importance. Since IoT data are vulnerable to eavesdropping, tampering, forgery, and other attacks during an open network transmission, the integrity and authenticity of data are fundamental security requirements in the IoT. A certificateless signature (CLS) is a viable solution for providing data integrity, data authenticity, and identity identification in resource-constrained IoT devices. Therefore, designing a secure and efficient CLS scheme for IoT environments has become one of the main objectives of IoT security research. However, the existing CLS schemes rarely focus on strong unforgeability and replay attacks. Herein, we design a novel CLS scheme to protect the integrity and authenticity of IoT data. In addition to satisfying the strong unforgeability requirement, the proposed scheme also resists public key replacement attacks, malicious-but-passive key-generation-centre attacks, and replay attacks. Compared with other related CLS schemes without random oracles, our CLS scheme has a shorter private key, stronger security, and lower communication and computational costs.

摘要

随着物联网(IoT)的广泛应用,确保物联网设备的通信安全至关重要。由于物联网数据在开放网络传输过程中容易受到窃听、篡改、伪造等攻击,数据的完整性和真实性是物联网中的基本安全要求。无证书签名(CLS)是一种在资源受限的物联网设备中提供数据完整性、数据真实性和身份识别的可行解决方案。因此,为物联网环境设计一种安全高效的CLS方案已成为物联网安全研究的主要目标之一。然而,现有的CLS方案很少关注强不可伪造性和重放攻击。在此,我们设计了一种新颖的CLS方案来保护物联网数据的完整性和真实性。除了满足强不可伪造性要求外,该方案还能抵御公钥替换攻击、恶意但被动的密钥生成中心攻击和重放攻击。与其他没有随机预言机的相关CLS方案相比,我们的CLS方案具有更短的私钥、更强的安全性以及更低的通信和计算成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe9b/6631681/867a893abe02/sensors-19-02692-g001.jpg

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