Cavalieri Salvatore
Department of Electrical Electronic and Computer Engineering, University of Catania, Viale A. Doria 6, 95125 Catania, Italy.
Sensors (Basel). 2021 Apr 6;21(7):2571. doi: 10.3390/s21072571.
In the era of Industry 4.0, pervasive adoption of communication technologies based on the Internet of Things represents a very strong requirement in several domains. In the smart grid domain, there is the need to overcome one of the main limitations of the current electric grid, allowing the use of heterogeneous devices capable of measuring, monitoring and exchanging information about grid components. For this reason, current literature often presents research activities about enabling internet of things (IoT) in smart grids; in particular, several proposals aim to realize interworking between IoT and smart grid communication standards, allowing exchange of information between IoT devices and the electrical grid components. Semantic interoperability should be achieved in an interworking solution in order to provide a common meaning of the data exchanged by heterogeneous devices, even if they belong to different domains. Until now, semantic interoperability remains an open challenge in the smart grid field. The paper aims to propose a novel solution of interworking between two of the most used communication systems in smart grids and IoT domains, i.e., IEC 61850 and oneM2M, respectively. A semantic interoperability solution is also proposed to be used in the interworking scheme here presented.
在工业4.0时代,基于物联网的通信技术的广泛应用在多个领域是一项非常迫切的需求。在智能电网领域,需要克服当前电网的一个主要限制,即允许使用能够测量、监测和交换有关电网组件信息的异构设备。因此,当前文献经常呈现关于在智能电网中实现物联网(IoT)的研究活动;特别是,一些提议旨在实现物联网与智能电网通信标准之间的互通,允许物联网设备与电网组件之间交换信息。为了给异构设备(即使它们属于不同领域)所交换的数据提供共同的含义,在互通解决方案中应实现语义互操作性。到目前为止,语义互操作性在智能电网领域仍然是一个悬而未决的挑战。本文旨在提出一种新颖的解决方案,用于智能电网和物联网领域中最常用的两种通信系统(即分别为IEC 61850和oneM2M)之间的互通。本文还提出了一种语义互操作性解决方案,用于此处所呈现的互通方案。