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Secure Multifactor Authenticated Key Agreement Scheme for Industrial IoT

机译:安全的Multifactor经典验证的工业IOT密钥协议计划

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摘要

The application of Internet of Things (IoT) has generally penetrated into people's life and become popular in recent years. The IoT devices with different functions are integrated and applied to various domains, such as E-health, smart home, Industrial IoT (IIoT), and smart farming. IIoT obtains the general attention among these domains, which allows the authorized user remotely access and control the sensing devices. The user suffices to attain the real-time data collected by sensing devices during the process of production. However, these data is usually transmitted via an insecure channel, which brings the problem of the security and privacy arising from the hostile attacks in IIoT. To resist the hostile attacks by the adversary and protect the security of the transmitted data, we propose a secure multifactor authenticated key agreement scheme for IIoT to support the authorized user remotely accessing the sensing device. The scheme adopts password, biometrics, and smart card to identify the user in the IIoT environment. We employ the secret-sharing technology and Chinese remainder theorem to construct a group key among legitimate sensing devices, and then this group key is utilized to assist in negotiating a secure session key between the user and multiple sensing devices. The proposed scheme is suitable for the resource-constrained IIoT as it only uses hash function, bitwise XOR operation, and symmetric cryptography. The performance analysis indicates that our scheme has less communication and computational costs in contrast to other correlative schemes. Besides, the security analysis indicates that our scheme can withstand many known attacks.
机译:东西互联网(物联网)的应用一般都渗透到人们的生命中,近年来变得流行。具有不同功能的物联网设备集成并应用于各个域,例如电子健康,智能家庭,工业物联网(IIT)和智能农业。 IIT在这些域中获得了一般性的注意,这允许授权用户远程访问和控制传感设备。用户足以实现通过在生产过程中进行传感设备收集的实时数据。然而,这些数据通常通过不安全的频道传输,这为IIOT中的敌对攻击产生的安全性和隐私问题传输。为了抵制对敌对的敌对攻击并保护传输数据的安全性,我们提出了一种安全的MultioDor经过身份验证的密钥协议方案,以支持远程访问传感设备的授权用户。该方案采用密码,生物识别和智能卡来识别IIT环境中的用户。我们采用秘密共享技术和中国剩余定理来构建合法感测设备之间的组密钥,然后利用该组密钥来帮助协商用户和多个传感设备之间的安全会话密钥。所提出的方案适用于资源受限的IIOR,因为它仅使用哈希函数,按位XOR操作和对称密码术。性能分析表明,与其他相关方案相比,我们的方案具有较差的沟通和计算成本。此外,安全分析表明我们的方案可以承受许多已知的攻击。

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