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Research on Terminal Security Technology of Ubiquitous Power Internet of Things Based on PUF and SM3

机译:基于PUF和SM3的普适电力物联网终端安全技术研究

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Many constrained devices of Internet of Things (IoT) are operating under low power, and with limited computational and network resources. The devices cannot use standard security protocols to protect end-to-end security because they become the weakness of IoT. Narrow Band Internet of Things (NB-IoT) is of broad application prospects in production management, life-cycle asset management and smart power utilization of smart grid. Its characteristics and security demands of application domain present a challenge for the security of electric power business. In order to improve the high security of power network data transmission, a security encryption method for ubiquitous power Internet of things terminal based on physical unclonable function (PUF) and state secret algorithm SM3 is proposed in this paper. A self-controllable NB-IoT application layer security architecture is designed by introducing the domestic cryptographic algorithm SM3, extending the existing key derivation structure of LTE, and combining the physical unclonable function to ensure the generation of encryption keys between NB-IoT terminals and power grid business platforms. The developed IoT security transmission module is applied in the intelligent inspection robot of substation to realize transparent and encrypted transmission of video and thermal sensing data. The scheme of this paper realizes secure data transmission and bidirectional identity authentication between IoT devices and terminals. Experimental results validate its features, including lightweight, low communication costs and flexible key update.
机译:许多受约束的物联网(IoT)设备都在低功率下运行,并且计算和网络资源有限。这些设备无法使用标准的安全协议来保护端到端的安全性,因为它们已成为物联网的弱点。窄带物联网(NB-IoT)在生产管理,生命周期资产管理和智能电网的智能电源利用方面具有广阔的应用前景。它的特性和应用领域的安全性要求对电力业务的安全性提出了挑战。为了提高电网数据传输的高安全性,提出了一种基于物理不可克隆功能(PUF)和状态秘密算法SM3的泛在电力物联网终端安全加密方法。通过引入家用加密算法SM3,扩展LTE现有的密钥推导结构,结合物理不可克隆功能以确保NB-IoT终端与电源之间生成加密密钥,设计了可自我控制的NB-IoT应用层安全架构。网格业务平台。所开发的物联网安全传输模块,应用于变电站智能巡检机器人中,实现视频和热敏数据的透明加密传输。该方案实现了物联网设备与终端之间安全的数据传输和双向身份认证。实验结果验证了它的功能,包括轻巧,低通信成本和灵活的密钥更新。

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