数字签密
计算机科学
认证(法律)
密码学
计算机安全
公钥密码术
密码原语
GSM演进的增强数据速率
保密
边缘计算
加密
计算机网络
密码协议
电信
物联网
作者
Guangxia Xu,Jingnan Dong,Chuang Ma,Jun Liu,Uchani Gutierrez Omar Cliff
标识
DOI:10.1109/jiot.2022.3151359
摘要
The emergence of edge computing makes it possible to realize new technologies, such as virtual reality and augmented reality. However, a large number of devices and more messages at the edge bring more security problems. Therefore, it is an important research topic to provide users with faster network services while ensuring confidentiality and authentication of data transmission. Because signcryption can encrypt and sign messages at the same time, it has become a new cryptographic primitive. In the meantime, certificateless signcryption guarantees data confidentiality and authentication and addresses traditional single point failure problems based on the trust center and the problem of relying on a trusted third party. Therefore, certificateless signcryption has attracted great attention from academia and industry. But certificateless signcryption also faces two types of attacks. In order to more effectively resist these two types of attacks, we propose a certificateless signcryption mechanism based on blockchain. This mechanism can make good use of the nontamperable feature of blockchain, prevent illegal users from substituting the public key of the user, and guarantee signature nonrepudiation. And our scheme is investigated in a comparative study with eight schemes. Comparative analysis outcomes demonstrate our scheme has achieved better results in efficiency and security. The process of signcryption and unsigncryption consumes the least amount of computation, which is very suitable for the edge computing environment.
科研通智能强力驱动
Strongly Powered by AbleSci AI