Information Security Protection of Internet of Energy Using Ensemble Public Key Algorithm under Big Data

Baode Lin, Zhenwei Geng, Fengrong Yu
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Abstract

This work aims to solve the specific problem in the Power Internet of Things (PIoT). PIoT is vulnerable to monitoring, tampering, forgery, and other attacks during frequent data interaction under the background of big data, leading to a severe threat to the power grid’s Information Security (ISEC). Cryptosystems can solve ISEC problems, such as confidentiality, data integrity, authentication, identity recognition, data control, and nonrepudiation. Thereupon, this work expounds on cryptography from public-key encryption and digital signature and puts forward the model of network information attack. Then, the security of the two cryptograms is certified against the two cyberattack modes. On this basis, an Identity-based Combined Encryption and Signature (IBCES) ensemble scheme is proposed by combining public-key encryption with the digital signature. Finally, the security of the proposed IBCES’s encryption and the signature schemes is verified, and the results prove their feasibility. The results show that the proposed IBCEs are effective and feasible, fully meeting the information confidentiality requirements. Additionally, smart grid against Information Security (ISEC) algorithms must comprehensively consider network resources and computing power. This work creatively combines the two cryptosystems. The proposal breaks the traditional key segmentation principle by applying the same key to different cryptosystems and ensures the independent security of the two cryptosystems. The conclusion provides technical support for future research on cryptography.
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大数据下基于集成公钥算法的能源互联网信息安全保护
本工作旨在解决电力物联网(PIoT)中的具体问题。在大数据背景下,PIoT在频繁的数据交互中容易受到监控、篡改、伪造等攻击,对电网的信息安全构成严重威胁。密码系统可以解决ISEC问题,例如机密性、数据完整性、身份验证、身份识别、数据控制和不可否认性。在此基础上,本文从公钥加密和数字签名两方面对密码学进行了阐述,提出了网络信息攻击模型。然后,针对两种网络攻击方式对两种密码的安全性进行了验证。在此基础上,提出了一种将公钥加密与数字签名相结合的基于身份的组合加密与签名(IBCES)集成方案。最后,对所提出的IBCES加密和签名方案的安全性进行了验证,结果证明了其可行性。结果表明,所提出的ibce是有效可行的,完全满足信息保密要求。此外,智能电网抗信息安全(ISEC)算法必须综合考虑网络资源和计算能力。这项工作创造性地结合了这两种密码系统。该方案打破了传统的密钥分割原则,对不同的密码系统使用相同的密钥,保证了两种密码系统的独立安全性。该结论为今后密码学的研究提供了技术支持。
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