Upcoming Lectures

图片

Upcoming Lectures

当前位置: Home >> Upcoming Lectures >> 正文

Lecture 3 A Vision for the Future:Modernization of Electric Power System

第三讲 未来的愿景:电力系统的现代化

日期: 2020-05-30 点击:

Abstract

Electric power system is the largest and the most complex artificial dynamic system. The development of modern society is more dependent on electricity than ever before, and the process of generation, transmission, distribution, and usage of electricity in a secure, reliable, and economic manner is essential for economic development and national security. This lecture will introduce the basic concept of power systems, discuss the new challenges and opportunities in the power system modernization, and provide a vision for the development of power systems in future.

电力系统是世界上最大的、最复杂的人造动力学系统。现代社会的发展越来越离不开电力,安全、可靠、经济的电力“发、输、配、用”环节是国民经济发展和国家安全的重要保障。本报告主要介绍电力系统的基本概念,讨论电力系统现代化进程中的机遇和挑战,并展望未来电力系统发展的愿景。

Speaker Bio

Chen Chen, PhD, Professor/Doctoral supervisor. He received the Ph.D. degree in electrical engineering at Lehigh University, USA, in 2013, and Master and Bachelor degrees from Xi'an Jiaotong University in 2009 and 2006, respectively. During 2013 to 2015, he was a Postdoctoral Appointee at Argonne National Laboratory in Lemont, Illinois. During 2016 to 2019, he was an Energy Systems Scientist in the Center for Energy, Environmental, and Economic Systems Analysis at Argonne National Laboratory. Dr. Chen is a Senior Member of IEEE. He has been serving as an editor of IEEE Transactions on Smart Grid and IEEE Power Engineering Letters since 2015. His research interest includes power system analysis with focus on distribution systems and microgrids, power grid resilience, demand side management, communications and signal processing in smart grid.

陈晨,西安交通大学电气工程学院教授,博士生导师,IEEE Senior Member。西安交通大学“青年拔尖人才计划(A类)”学者。2013年获得美国里海大学电气工程博士学位,2013年至2015年在美国阿贡国家实验室从事博士后研究,2016年至2019年在美国阿贡国家实验室担任Energy Systems Scientist,主持和参与多项美国能源部智能电网项目。2015年起担任《IEEE Transactions on Smart Grid》和《IEEE Power Engineering Letters》编委。主要研究方向为电力系统自愈恢复,主动配电网和微电网,需求侧管理,通信和信号处理在智能电网中的应用等。