The Internet of Things (IoT) is giving a boost to a plethora of new opportunities for the robust and sustainable deployment of cyber physical systems. The cornerstone of any IoT system is the sensing devices. These sensing devices have considerable resource constraints, including insufficient battery capacity, CPU capability, and physical security. Because of such resource constraints, designing lightweight cryptographic protocols is an opportunity. Remote User Authentication ensures that two parties establish a secure and durable session key. This study presents a lightweight and safe authentication strategy for the user-gateway (U GW) IoT network model. The proposed system is designed leveraging Elliptic Curve Cryptography (ECC). We undertake a formal security analysis with both the Automated Validation of Internet Security Protocols (AVISPA) and Burrows Abadi Needham (BAN) logic tools and an information security assessment with the Delev Yao channel. We use publish subscribe based Message Queuing Telemetry Transport (MQTT) protocol for communication. Additionally, the performance analysis and comparison of security features show that the proposed scheme is resilient to well known cryptographic threats.
翻译:“物”互联网(IoT)正在推动大量新的机会,使网络物理系统得到稳健和可持续部署。任何IoT系统的基石是感应装置。这些感应装置有相当大的资源限制,包括电池容量、CPU能力和人身安全能力不足。由于这种资源限制,设计轻量级加密协议是一个机会。远程用户认证确保双方建立一个可靠和持久的会话键。本研究报告为用户门户(U GW) IoT网络模型提供了一个轻度和安全的认证战略。拟议的系统是利用 Elliptic Curve密码学(ECC)设计的。我们用互联网安全协议自动验证和Burrows Abadi Nedham(BAN)逻辑工具以及Delev Yao频道的信息安全评估进行正式的安全分析。我们使用基于订阅的“电路路测量传输(MQQTTT)”通信协议进行通信。此外,对安全特征的绩效分析和比较表明,拟议的计划能够抵御众所周知的加密威胁。