Park Joonsuu, Park KeeHyun
Department of Computer Engineering, Keimyung University, Daegu 42601, Korea.
Sensors (Basel). 2020 Oct 26;20(21):6078. doi: 10.3390/s20216078.
In smart dust IoT environments, a large number of devices with low computing power/resources are deployed to collect surrounding information. There are many issues to consider for an efficient and secure smart dust IoT environment. Sometimes the urgent sensed data needs to be transmitted immediately. In addition, there are potential problems related to security issues since the smart dust IoT systems may be deployed in hard-to-access areas. In this paper, we propose an effective transmission method for two-class sensed data for secure smart IoT systems. We divide the sensed data into two classes which consist of the urgent sensed data class (requiring urgent data transmission) and the normal sensed data class (with a slight transmission delay due to yielding to the urgent data transmission). In addition, for security reasons, the proposed transmission method uses two kinds of blockchains with the following two ledgers: (1) the urgent sensed data ledger, which is a ledger of data that needs urgent transmission; and (2) the normal sensed data ledger, which is a ledger of data that allows some delay. To be specific, the lightweight blockchain based on our earlier work is used for the normal sensed data transmission, whereas the modified conventional blockchain is used for the normal sensed data transmission. The experiments show that the performance of the proposed transmission method is better than the conventional transmission method in almost all sections. There is a 53% performance increase on average with regard to the transmission time. When the ratio of urgent sensed data is 0% (i.e., no urgent sensed data at all), the proposed transmission method is greater improved by as much as about 96%. This means that the lightweight blockchain scheme used in the proposed transmission method for the normal sensed data is very efficient.
在智能尘埃物联网环境中,部署了大量计算能力/资源较低的设备来收集周围信息。对于高效且安全的智能尘埃物联网环境,有许多问题需要考虑。有时,紧急感测数据需要立即传输。此外,由于智能尘埃物联网系统可能部署在难以进入的区域,因此存在与安全问题相关的潜在问题。在本文中,我们为安全的智能物联网系统提出了一种针对两类感测数据的有效传输方法。我们将感测数据分为两类,即紧急感测数据类(需要紧急数据传输)和正常感测数据类(由于优先处理紧急数据传输而有轻微传输延迟)。此外,出于安全考虑,所提出的传输方法使用两种带有以下两个账本的区块链:(1)紧急感测数据账本,它是需要紧急传输的数据的账本;(2)正常感测数据账本,它是允许有一定延迟的数据的账本。具体而言,基于我们早期工作的轻量级区块链用于正常感测数据传输,而修改后的传统区块链用于紧急感测数据传输。实验表明,所提出的传输方法在几乎所有方面的性能都优于传统传输方法。在传输时间方面,平均性能提升了53%。当紧急感测数据的比例为0%(即完全没有紧急感测数据)时,所提出的传输方法的改进幅度高达约96%。这意味着在所提出的传输方法中用于正常感测数据的轻量级区块链方案非常高效。