基于DNA生物密码学的智能电表数据通信安全方案研究

V. Radhakrishnan, D. Durairaj, Kannapiran Balasubramanian, K. Kamatchi
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引用次数: 2

摘要

数据安全是智能电表通信通过高级计量基础设施控制服务器的主要要求。智能电表的易接入性和AMI通信网络的多面性是智能电表面临大量攻击的主要原因。由于通信网络的拓扑结构、带宽和异构性不同,现有的安全机制难以满足智能电表的安全要求。因此,在将智能电表数据传输到控制服务器之前,必须使用先进的安全机制对其进行加密。新兴的生物加密技术与现有技术相比具有许多优点,最适合为智能电表等低处理量设备的通信提供安全保障。针对智能电表的安全通信问题,提出了一种采用DNA序列和合适的密钥管理方案的轻量级加密方案。所提出的两阶段DNA密码技术为传输数据提供了保密性和完整性,密钥的认证通过Diffie Hellman方案交换实现。利用Simulink/Matlab对AMI通信网络进行仿真,分析了所提出的加密方案的强度,并对其有效性进行了评价。仿真结果表明,该方案适用于智能电表数据的安全通信。
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Development Of A Novel Security Scheme Using DNA Biocryptography For Smart Meter Data Communication
Data security is a major requirement of smart meter communication to control server through Advanced Metering infrastructure. Easy access of smart meters and multi-faceted nature of AMI communication network are the main reasons of smart meter facing large number of attacks. The different topology, bandwidth and heterogeneity in communication network prevent the existing security mechanisms in satisfying the security requirements of smart meter. Hence, advanced security mechanisms are essential to encrypt smart meter data before transmitting to control server. The emerging biocryptography technique has several advantages over existing techniques and is most suitable for providing security to communication of low processing devices like smart meter. In this paper, a lightweight encryption scheme using DNA sequence with suitable key management scheme is proposed for secure communication of smart meter in an efficient way. The proposed 2-phase DNA cryptography provides confidentiality and integrity to transmitted data and the authentication of keys is attained by exchanging through Diffie Hellman scheme. The strength of proposed encryption scheme is analyzed and its efficiency is evaluated by simulating an AMI communication network using Simulink/Matlab. Comparison of simulation results with various techniques show that the proposed scheme is suitable for secure communication of smart meter data.
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