Urrea Claudio, Benítez David
Electrical Engineering Department, Faculty of Engineering, University of Santiago of Chile, Las Sophoras 165, Estación Central, Santiago 9170124, Chile.
Sensors (Basel). 2021 Oct 1;21(19):6585. doi: 10.3390/s21196585.
The use of Software-Defined Networking (SDN) in the communications of the Industrial Internet of Things (IIoT) demands more comprehensive solutions than those developed to date. The lack of an SDN solution applicable in diverse IIoT scenarios is the problem addressed in this article. The main cause of this problem is the lack of integration of a set of aspects that should be considered in a comprehensive SDN solution. To contribute to the solution of this problem, a review of the literature is conducted in this article, identifying the main requirements for industrial networks nowadays as well as their solutions through SDN. This review indicates that aspects such as security, independence of the network technology used, and network centralized management can be tackled using SDN. All the advantages of this technology can be obtained through the implementation of the same solution, considering a set of aspects proposed by the authors for the implementation of SDNs in IIoT networks. Additionally, after analyzing the main features and advantages of several architectures proposed in the literature, an architecture with distributed network control is proposed for all SDN network scenarios in IIoT. This architecture can be adapted through the inclusion of other necessary elements in specific scenarios. The distributed network control feature is relevant here, as it prevents a single fault-point for an entire industrial network, in exchange for adding some complexity to the network. Finally, the first ideas for the selection of an SDN controller suitable for IIoT scenarios are included, as this is the core element in the proposed architecture. The initial proposal includes the identification of six controllers, which correspond to different types of control planes, and ten characteristics are defined for selecting the most suitable controller through the Analytic Hierarchy Process (AHP) method. The analysis and proposal of different fundamental aspects for the implementation of SDNs in IIoT in this article contribute to the development of a comprehensive solution that is not focused on the characteristics of a specific scenario and would, therefore, be applicable in limited situations.
在工业物联网(IIoT)通信中使用软件定义网络(SDN)需要比迄今开发的解决方案更全面的方案。本文解决的问题是缺乏适用于各种IIoT场景的SDN解决方案。该问题的主要原因是在全面的SDN解决方案中应考虑的一组方面缺乏整合。为了有助于解决此问题,本文对文献进行了综述,确定了当今工业网络的主要要求以及通过SDN实现的解决方案。该综述表明,诸如安全性、所用网络技术的独立性以及网络集中管理等方面可以通过SDN来解决。考虑到作者提出的在IIoT网络中实施SDN的一组方面,通过实施相同的解决方案可以获得该技术的所有优势。此外,在分析了文献中提出的几种架构的主要特征和优势之后,针对IIoT中的所有SDN网络场景提出了一种具有分布式网络控制的架构。该架构可以通过在特定场景中包含其他必要元素进行调整。这里分布式网络控制功能很重要,因为它避免了整个工业网络出现单个故障点,尽管这会给网络增加一些复杂性。最后,还包括了选择适用于IIoT场景的SDN控制器的初步想法,因为这是所提出架构的核心元素。初步提议包括识别六个对应不同控制平面类型的控制器,并定义了十个特征,通过层次分析法(AHP)方法来选择最合适的控制器。本文对在IIoT中实施SDN的不同基本方面进行的分析和提议有助于开发一种不局限于特定场景特征的全面解决方案,因此将适用于有限的情况。