Department of Computer Science and Engineering, Soonchunhyang University, Asan 31538, Korea.
Sensors (Basel). 2018 Oct 19;18(10):3534. doi: 10.3390/s18103534.
The Internet of Things (IoT) environment is constantly evolving. Many IoT services have emerged, improving living conditions. Smart homes were among the first developments, and smart buildings, smart factories, and smart cities are attracting increasing attention. Smart cities represent the ultimate convergence of the IoT, the Cloud, big data, and mobile technology. Smart homes, buildings, and factories create smart cities. In addition, the IoT finds applications in traffic control, public safety, and medical services, permitting group-based communication. As the scale of service grows, the number of things (devices) constituting the service also increases. However, security vulnerabilities arise in group-based communication environments. A device may require authentication when entering a gateway; to secure environments with large numbers of devices (such as those featuring IoT smart metering), the gateways bear heavy loads. Therefore, efficient authentication of group leaders and devices is essential. Here, we develop a dynamic group authentication and key exchange scheme for group-based IoT smart metering environments which enables efficient communication among secure IoT services. Our group authentication scheme increases the computational efficiency of the group leader and the participating devices, based on a threshold secret sharing technique.
物联网(IoT)环境在不断发展。许多物联网服务已经出现,改善了人们的生活条件。智能家居是最早的发展之一,而智能建筑、智能工厂和智慧城市正越来越受到关注。智慧城市代表了物联网、云、大数据和移动技术的最终融合。智能家居、建筑和工厂构成了智慧城市。此外,物联网在交通控制、公共安全和医疗服务中得到了应用,实现了群组通信。随着服务规模的扩大,构成服务的设备数量也在增加。然而,在基于群组的通信环境中会出现安全漏洞。当设备进入网关时可能需要进行身份验证;为了保护具有大量设备(如物联网智能计量设备)的环境,网关承受着巨大的负载。因此,高效地对群组领导者和设备进行认证是至关重要的。在这里,我们为基于群组的物联网智能计量环境开发了一种动态群组认证和密钥交换方案,使安全的物联网服务之间能够进行高效通信。我们的群组认证方案基于门限秘密共享技术,提高了群组领导者和参与设备的计算效率。