DocumentCode
2054435
Title
Enhanced Automatic Generation Control (E-AGC) for future electric energy systems
Author
Qixing Liu ; Ilic, M.D.
Author_Institution
Dept. of Electr. & Comput. Eng., Carnegie Mellon Univ., Pittsburgh, PA, USA
fYear
2012
fDate
22-26 July 2012
Firstpage
1
Lastpage
8
Abstract
This paper concerns the problem of regulating frequency in the changing electric energy systems with large presence of renewable energy resources. We start by observing that currently implemented frequency regulation approach, well-known as the Automatic Generation Control (AGC), is based on equilibria (steady-state) assumptions. However, frequency regulation in systems with fast and persistent fluctuations caused by wind and solar power, in particular, can no longer be viewed as equilibria problems. In order to better understand and overcome these limitations, we formulate the frequency regulation problem by viewing the future electric energy systems as a general dynamical system driven by disturbances. We derive a dynamical model of the system and further utilize its structure to systematically design an Enhanced-AGC (E-AGC). System performance is defined to consider tradeoff between quality of frequency regulation and its cost. Our proposed E-AGC generally supports coordination of several interconnected control areas for achieving the best performance at the system level. The proposed E-AGC is illustrated by simulating a small two-control area system and a 2000 bus, 15 generator real-world power system of Sao Miguel Island in the Azores Archipelago of Portugal. A comparison with system response of today´s AGC is discussed.
Keywords
electricity supply industry; frequency control; power generation control; power system interconnection; renewable energy sources; solar power stations; wind power plants; 15 generator real-world power system; E-AGC; Portugal; automatic generation control enhancement; electric energy systems; frequency regulation approach; interconnected control areas; renewable energy resources; solar power; two-control area system; wind power; Automatic generation control; Frequency control; Generators; Interconnected systems; Mathematical model; Power systems; Steady-state;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Energy Society General Meeting, 2012 IEEE
Conference_Location
San Diego, CA
ISSN
1944-9925
Print_ISBN
978-1-4673-2727-5
Electronic_ISBN
1944-9925
Type
conf
DOI
10.1109/PESGM.2012.6345137
Filename
6345137
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