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A Novel Authentication and Key Agreement Protocol for Internet of Things Based Resource-Constrained Body Area Sensors

机译:基于资源受限体区传感器的物联网的新型认证和关键协议协议

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Secrecy and integrity of communication, as well as the authenticity of messages must be ensured by the security primitives and is critical element in Internet of Things (IoT). Devices in IoT applications such as smart healthcare applications deal with sensitive data of our health and daily lives and thus can execute malicious actuating commands with serious safety consequences. Therefore, it is important to ensure secure communication channel establishment among the medical sensors or devices and the remote servers. In this work, we propose a novel authentication and key agreement protocol that is lightweight for resource-constrained sensors and suitable to protect sensitive health related data in the context of IoT. The protocol is based on cooperation by offloading the heavy cryptographic functions of resource-constrained sensors to the trustful neighboring sensors. This trust verification is ensured by finding the data correlations from the data of embedded accelerometers in the smartphone acting as gateway and the sensors installed on the body. Security analysis and performance evaluation results show that the proposed protocol is secure and is energy efficient.
机译:秘密和诚信的通信,以及安全原语必须确保消息的真实性,并且是物联网(物联网)中的关键元素。 IOT应用程序中的设备如智能医疗保健应用程序处理我们的健康和日常生活的敏感数据,因此可以执行严重的安全后果的恶意执行命令。因此,重要的是要确保医疗传感器或设备和远程服务器之间的安全通信信道建立。在这项工作中,我们提出了一种新的认证和关键协议协议,对资源受限的传感器轻量级,并且适合在IOT的背景下保护敏感的健康相关数据。该协议是基于通过将资源约束传感器的重型密码功能卸载到可信邻传感器的合作。通过从充当网关中的嵌入式加速度计的数据和安装在主体上的传感器来确保通过查找数据相关性来确保该信任验证。安全性分析和性能评估结果表明,该方案是安全的,是节能的。

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