Digital twin in power system research and development: Principle, scope, and challenges

Mohammed A.M. Yassin, Ashish Shrestha, Suhaila Rabie
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引用次数: 1

Abstract

In order to address the issues that arise in modern power systems, such as system dynamics, stability, control, efficiency, reliability, economy, planning and policy, and so on, efforts have been made to develop new tools and techniques, components, methodologies, and scientific innovations in a variety of fields. These efforts have been undertaken to address these issues. The term “digital twin” (DT) refers to one of the most reliable and rapidly developing technologies that have recently been incorporated into a variety of applications, platforms, and real-time projects. The authors of this study offered a scoping review of DT technologies with a primary emphasis on power systems. It has been established that the underlying notion behind this technology, as well as its operating principle, types, communication channels and protocols, and standards, have all been thoroughly examined. In addition, the possibility of integrating other technologies with DT has also been considered, along with the potential benefits of doing so and the potential difficulties that may arise. Based on the information gained from the current projects, the finished projects, the research publications, as well as the research and industry insights, a critical discussion has been made.

电力系统研发中的数字孪生:原理、范围和挑战
为了解决现代电力系统中出现的问题,如系统动力学、稳定性、控制、效率、可靠性、经济性、规划和政策等,人们努力开发各种领域的新工具和技术、组件、方法和科学创新。为解决这些问题作出了这些努力。“数字孪生”(DT)一词是指最近被纳入各种应用程序、平台和实时项目的最可靠、发展最快的技术之一。本研究的作者对DT技术进行了范围审查,主要侧重于电力系统。已经确定,这项技术背后的基本概念,以及它的工作原理、类型、通信信道和协议以及标准,都经过了彻底的检查。此外,还考虑了将其他技术与DT集成的可能性,以及这样做的潜在好处和可能出现的潜在困难。根据从当前项目、已完成的项目、研究出版物以及研究和行业见解中获得的信息,进行了批判性讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
7.90
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