Park Kisung, Park Youngho
Blockchain & Big Data Research Department, Electronics and Telecommunications Research Institute, Daejeon 34129, Korea.
School of Electronics Engineering, Kyungpook National University, Daegu 41566, Korea.
Sensors (Basel). 2022 Aug 20;22(16):6264. doi: 10.3390/s22166264.
The Internet of Things (IoT) with cloud services are important functionalities in the latest IoT systems for providing various convenient services. These cloud-enabled IoT environments collect, analyze, and monitor surrounding data, resulting in the most effective handling of large amounts of heterogeneous data. In these environments, secure authentication with a key agreement mechanism is essential to ensure user and data privacy when transmitting data between the cloud server and IoT nodes. In this study, we prove that the previous scheme contains various security threats, and hence cannot guarantee essential security requirements. To overcome these security threats, we propose an improved authentication and key agreement scheme for cloud-enabled IoT using PUF. Furthermore, we evaluate its security by performing informal, formal (mathematical), and simulation analyses using the AVISPA tool and ROR model. The performance and security properties of our scheme are subsequently compared with those of other related schemes. The comparison confirms that our scheme is suitable for a practical cloud-enabled IoT environment because it provides a superior security level and is more efficient than contemporary schemes.
物联网(IoT)与云服务是最新物联网系统中提供各种便捷服务的重要功能。这些支持云的物联网环境收集、分析和监控周围数据,从而最有效地处理大量异构数据。在这些环境中,通过密钥协商机制进行安全认证对于在云服务器和物联网节点之间传输数据时确保用户和数据隐私至关重要。在本研究中,我们证明了先前的方案存在各种安全威胁,因此无法保证基本的安全要求。为了克服这些安全威胁,我们提出了一种使用PUF的支持云的物联网改进认证和密钥协商方案。此外,我们使用AVISPA工具和ROR模型通过进行非正式、形式化(数学)和模拟分析来评估其安全性。随后将我们方案的性能和安全属性与其他相关方案进行比较。比较结果证实我们的方案适用于实际的支持云的物联网环境,因为它提供了更高的安全级别且比当代方案更高效。