椭圆曲线密码
计算机科学
计算机安全
散列函数
认证(法律)
密码
软件部署
计算机网络
物联网
攻击面
智慧城市
加密
密码学
嵌入式系统
方案(数学)
公钥密码术
操作系统
数学分析
数学
作者
Badis Hammi,Achraf Fayad,Rida Khatoun,Sherali Zeadally,Youcef Begriche
出处
期刊:IEEE Systems Journal
[Institute of Electrical and Electronics Engineers]
日期:2020-09-01
卷期号:14 (3): 3440-3450
被引量:92
标识
DOI:10.1109/jsyst.2020.2970167
摘要
Internet of Things (IoT) enables the interconnection of physical and virtual objects that are managed by various types of hardware, software, and communication technologies. The large-scale deployment of IoT is actually enabling smart cities, smart factories, smart health, and many other applications and initiatives all over the world. Indeed, according to a recent Gartner study, 50 billion connected objects will be deployed by 2020. IoT will make our cities and daily applications smart. However, IoT technologies also open up multiple risks and privacy issues. Due to hardware limitations of IoT objects, implementing and deploying robust and efficient security and privacy solutions for the IoT environment remains a significant challenge. One-time password (OTP) is an authentication scheme that represents a promising solution for IoT and smart cities environments. We extend the OTP principle and propose a novel approach of OTP generation that relies on elliptic curve cryptography and isogeny in order to ensure IoT security. We evaluate the efficacy of our approach with a real implementation and compared its performance with two other approaches namely, hash message authentication code-based OTP and time-based OTP. The performance results obtained demonstrate the efficiency and effectiveness of our approach in terms of security and performance.
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