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A Lightweight Authentication Mechanism for M2M Communications in Industrial IoT Environment

机译:工业物联网环境中M2M通信的轻量级认证机制

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摘要

In the emerging Industrial IoT era, Machine-to-Machine (M2M) communication technology is considered as a key underlying technology for building Industrial IoT environments where devices (e.g., sensors, actuators, gateways) are enabled to exchange information with each other in an autonomous way without human intervention. However, most of the existing M2M protocols that can be also used in the Industrial IoT domain provide security mechanisms based on asymmetric cryptography resulting in high computational cost. As a consequence, the resource-constrained IoT devices are not able to support them appropriately and thus, many security issues arise for the Industrial IoT environment. Therefore, lightweight security mechanisms are required for M2M communications in Industrial IoT in order to reach its full potential. As a step towards this direction, in this paper, we propose a lightweight authentication mechanism, based only on hash and XOR operations, for M2M communications in Industrial IoT environment. The proposed mechanism is characterized by low computational cost, communication and storage overhead, while achieving mutual authentication, session key agreement, device’s identity confidentiality, and resistance against the following attacks: replay attack, man-in-the-middle attack, impersonation attack, and modification attack.
机译:在新兴的工业物联网时代,机器对机器(M2M)通信技术被认为是构建工业物联网环境的关键基础技术,在该工业物联网环境中,设备(例如传感器,执行器,网关)能够在彼此之间交换信息。无需人工干预的自主方式。但是,也可以在工业物联网领域中使用的大多数现有M2M协议提供了基于非对称加密的安全机制,从而导致了高计算成本。结果,资源受限的IoT设备无法适当地支持它们,因此,工业IoT环境会出现许多安全问题。因此,工业物联网中的M2M通信需要轻量级的安全机制,以充分发挥其潜力。作为朝这个方向迈出的一步,我们提出了一种仅基于哈希和XOR操作的轻量级身份验证机制,用于工业物联网环境中的M2M通信。该机制的特点是计算成本低,通信和存储开销低,同时实现了相互认证,会话密钥协议,设备的身份保密性以及对以下攻击的抵抗力:重放攻击,中间人攻击,模拟攻击,和修改攻击。

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