Demand Response and Direct Load Control for Renewable Energy Integration into Power Grid
With the high penetration of new
energy sources, its strong random output has led to
rapid dynamic fluctuations in active power and
voltage, reduced utilization of main transformer
equipments, significantly increased peak shaving and
frequency modulation requirements, and substantial
increased grid construction and operating costs. At
the same time, load side resources such as
thermostatically controlled loads, electric
vehicles, industrial loads, and distributed energy
storage have great potential for power regulation.
By establishing load regulation models and studying
the coordinated control technology of load response
to grid regulation demand, it can greatly improve
the capacity of new energy consumption and reduce
grid operation and construction costs.
Organizer: Siyang Liao, Wuhan University,
China
Biography:
Liao Siyang is currently an associate
professor and master tutor of School of
Electrical and Automation, Wuhan University.
He was selected as the "Young Talent Lifting
Project" of China Institute of Electrical
Engineering in 2019, and served as Deputy
Secretary-General of Energy Storage
Grid-connected and Operation Sub-technical
Committee of IEEE PES Energy Storage
Technology Committee (China). In 2016, he
received his Ph.D. in Electrical Engineering
from School of Electrical Engineering, Wuhan
University, and worked as a visiting scholar
at Denver University from November 2014 to
November 2015.
He is mainly engaged in industrial load fine
modeling and real-time control technology,
and power system operation and control with
a high proportion of new energy. He
published more than 30 SCI papers and won
second prize of technical invention by the
Ministry of Education, and won the Best
Paper Award of IEEE PES General Meeting. He
served as Chairman of New Energy Grid
Connection and Control Branch of 2019 APEEC
Conference.
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