Abrahamsen Fredrik Ege, Ai Yun, Cheffena Michael
Department of Electronic Systems, Faculty of Information Technology and Electrical Engineering, NTNU-Norwegian University of Science and Technology, 2815 Gjøvik, Norway.
Department of Manufacturing and Civil Engineering, Faculty of Engineering, NTNU-Norwegian University of Science and Technology, 2815 Gjøvik, Norway.
Sensors (Basel). 2021 Dec 3;21(23):8087. doi: 10.3390/s21238087.
With the ongoing trends in the energy sector such as vehicular electrification and renewable energy, the Smart Grid (SG) is clearly playing a more and more important role in the electric power system industry. One essential feature of the SG is the information flow over high-speed, reliable, and secure data communication networks in order to manage the complex power systems effectively and intelligently. SGs utilize bidirectional communication to function whereas traditional power grids mainly only use one-way communication. The communication requirements and suitable techniques differ depending on the specific environment and scenario. In this paper, we provide a comprehensive and up-to-date survey on the communication technologies used in the SG, including the communication requirements, physical layer technologies, network architectures, and research challenges. This survey aims to help the readers identify the potential research problems in the continued research on the topic of SG communications.
随着能源领域如车辆电气化和可再生能源等持续发展的趋势,智能电网(SG)在电力系统行业中显然正发挥着越来越重要的作用。智能电网的一个基本特征是通过高速、可靠且安全的数据通信网络进行信息流传输,以便有效且智能地管理复杂的电力系统。智能电网利用双向通信来运行,而传统电网主要仅使用单向通信。通信需求和适用技术因具体环境和场景而异。在本文中,我们对智能电网中使用的通信技术进行了全面且最新的综述,包括通信需求、物理层技术、网络架构以及研究挑战。本综述旨在帮助读者在智能电网通信这一主题的持续研究中识别潜在的研究问题。