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A Dynamic Secret-Based Encryption Scheme for Smart Grid Wireless Communication

机译:基于动态秘密的智能电网无线通信加密方案

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摘要

Integrating information network into power system is the key for realizing the vision of smart grid, but also introduces many security problems. Wireless communication offers the benefits of low cost, rapid deployment, shared communication medium, and mobility; at the same time, it causes many security and privacy challenges. In this paper, the concept of dynamic secret is applied to design an encryption scheme for smart grid wireless communication. Between two parties of communication, the previous packets are coded as retransmission sequence, where retransmitted packet is marked as “1” and the other is marked as “0.” During the communication, the retransmission sequence is generated at both sides to update the dynamic encryption key. Any missing or misjudging in retransmission sequence would prevent the adversary from achieving the keys. In our experiments, a smart grid platform is built, employing the ZigBee protocol for wireless communication. And a dynamic secret-based encryption demo system is designed based on this platform. The experiment results show that the retransmission and packet loss in ZigBee communication are inevitable and unpredictable, and it is impossible for the adversary to track the updating of the dynamic encryption key.
机译:将信息网络集成到电力系统中是实现智能电网愿景的关键,但同时也带来了许多安全问题。无线通信具有低成本,快速部署,共享通信介质和移动性的优点。同时,它带来了许多安全和隐私挑战。本文将动态秘密的概念应用于智能电网无线通信的加密方案设计。在通信的两方之间,先前的数据包被编码为重发序列,其中重发的数据包被标记为“ 1”,另一个被重标记为“ 0”。在通信过程中,双方都会生成重传序列以更新动态加密密钥。重传序列中的任何丢失或错误判断都将阻止对手获取密钥。在我们的实验中,构建了一个智能电网平台,该平台采用ZigBee协议进行无线通信。在此平台上设计了一个基于动态秘密的加密演示系统。实验结果表明,ZigBee通信中的重传和丢包是不可避免且不可预测的,对手无法跟踪动态加密密钥的更新。

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