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Designing Anonymous Signature-Based Authenticated Key Exchange Scheme for Internet of Things-Enabled Smart Grid Systems

机译:设计基于匿名签名的经过身份验证的关键交换方案,了解了智能电网互联网

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摘要

Recent technological evolution in the Internet of Things (IoT) age supports better solutions to magnify the management of the power quality and reliability concerns, and imposes the measures of a smart grid. In smart grid environment, a smart meter needs to securely access the services from a service provider via insecure channel. However, since the communication is via public channel, it imposes various security threats by an adversary. To deal with this, in this article we design a new anonymous signature-based authenticated key exchange scheme for IoT-enabled smart grid environment, called AAS-IoTSG. The dynamic smart meter addition phase is also permissible in AAS-IoTSG after initial deployment. The security of AAS-IoTSG has been tested rigorously using formal security analysis under the real-or-random (ROR) model which is one of the broadly-accepted standard random oracle models, formal security verification under the broadly-used automated validation of Internet security protocols and applications (AVISPA) tool and also using informal security analysis. Finally, an exhaustive comparative study unveils that AAS-IoTSG supports better security and functionality features and requires less communication and computation overheads as compared to the existing state-of-art authentication mechanisms in smart grid systems.
机译:最近的技术演变(物联网)(物联网)年龄支持更好的解决方案,以放大功率质量和可靠性问题的管理,并强加了智能电网的措施。在智能电网环境中,智能仪表需要通过不安全的频道从服务提供商安全地访问服务。但是,由于通信通过公共渠道,它通过对手施加了各种安全威胁。要解决此问题,在本文中,我们设计了一种新的匿名签名的经过验证的密钥交换方案,可用于称为IOT的智能电网环境,称为AAS-Iotsg。初始部署后,AAS-IOTSG也允许动态智能仪表添加阶段。 AAS-IOTSG的安全性在实际或 - 随机(ROR)模型下使用正式的安全性分析来严格测试,该模型是广泛接受的标准随机ORACLE模型之一,根据互联网的广泛使用的自动验证下的正式安全验证安全协议和应用程序(AVISPA)工具以及使用非正式安全分析。最后,与智能电网系统中的现有最先进的认证机制相比,穷举的比较研究推出了AAS-IOTSG支持更好的安全性和功能特征,并且需要更少的通信和计算开销。

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