随着能源革命的深入推进,传统电力调度模式难以适应新形势下的电网运行需求。文章探讨了一种基于无线通信技术的自动化电力调度系统设计方案。该系统由数据采集、通信网络、智能调度以及用户交互4个功能模块组成,综合运用5G、远距离无线...随着能源革命的深入推进,传统电力调度模式难以适应新形势下的电网运行需求。文章探讨了一种基于无线通信技术的自动化电力调度系统设计方案。该系统由数据采集、通信网络、智能调度以及用户交互4个功能模块组成,综合运用5G、远距离无线电(Long Range Radio,LoRa)、窄带物联网(Narrow Band Internet of Things,NB-IoT)等无线通信技术,结合深度学习、强化学习等人工智能算法,实现了电力系统的实时感知、智能决策以及高效执行。实验结果表明,与传统系统相比,该系统在数据采集准确率、通信效率、调度决策的经济性和安全性等方面均具有显著优势,研究成果对于推动能源电力系统的数字化、网络化、智能化发展具有重要意义。展开更多
A project named "A New Generation of Energy Management with Three Dimensional Coordination" has recently passed technical appraisal from the Ministry of Education. The project has been developed over the past 15 yea...A project named "A New Generation of Energy Management with Three Dimensional Coordination" has recently passed technical appraisal from the Ministry of Education. The project has been developed over the past 15 years by a research team led by Professor Zhang Boming from Tsinghua's Department of Electrical Engineering.展开更多
文摘随着能源革命的深入推进,传统电力调度模式难以适应新形势下的电网运行需求。文章探讨了一种基于无线通信技术的自动化电力调度系统设计方案。该系统由数据采集、通信网络、智能调度以及用户交互4个功能模块组成,综合运用5G、远距离无线电(Long Range Radio,LoRa)、窄带物联网(Narrow Band Internet of Things,NB-IoT)等无线通信技术,结合深度学习、强化学习等人工智能算法,实现了电力系统的实时感知、智能决策以及高效执行。实验结果表明,与传统系统相比,该系统在数据采集准确率、通信效率、调度决策的经济性和安全性等方面均具有显著优势,研究成果对于推动能源电力系统的数字化、网络化、智能化发展具有重要意义。
文摘A project named "A New Generation of Energy Management with Three Dimensional Coordination" has recently passed technical appraisal from the Ministry of Education. The project has been developed over the past 15 years by a research team led by Professor Zhang Boming from Tsinghua's Department of Electrical Engineering.