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CONTROL OF RENEWABLE ENERGY CENTRIC MICROGRID.
Faculty Advisor: Dr. Badrul Chowdhury, ECE Department
Student: Anshuman Vaidya, ECE Department
OBJECTIVE AND RESEARCH FOCUS
RESULTS / DISCUSSION
WPP CONTROL SCHEME
• The simulation results displays the power shared by
WPP and synchronous generator when the Microgrid
is subjected to the Load Profile.
• Development of real time assessment and control
methodology of Microgrid with high renewable energy
penetration.
• In this simulation the voltage profile at critical buses
and the rotor speeds of synchronous generators are
also captured and analyzed.
• Develop a scheme for real time assessment of
Microgrid with the help of PMCU’s installed at vital
locations.
• This model is to be used to analyze the best
configuration of generation mix possible for a particular
wind profile where the aim is to maximize the
renewable penetration.
• Develop and analyze a Microgrid model having voltage
and
frequency
regulation
participation
from
conventional generators and WPP.
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1
PREVIOUS CONTRIBUTIONS
7
FUTURE WORK
MICROGRID MODEL WITH WPP
• Other generation sources like photovoltaic system,
battery sources, Car parks and Fuel cells would be
added to complete the Microgrid.
• Analyzed renewable energy sources capability for
supporting the grid by providing voltage and frequency
support.
• PMCUs at vital locations would be installed in the
Microgrid and a theoretical communication network
would be developed between them.
• Implemented the active and reactive power control
schemes for Wind power plant.
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5
8
FUTURE WORK
LOAD PROFILE AND SIMULATION RESULTS
PREVIOUS CONTRIBUTIONS
• PMCU data would be used to analyze and asses the
real time state of the Microgrid.
Load 1
5
4
3
Load 1
2
1
0
1 3 5 7 9 11 13 15 17 19 21 23
Load 2
6
4
Load 2
2
0
1 3 5 7 9 11 13 15 17 19 21 23
Load 3
5
4
3
Load 3
2
1
0
1 3 5 7 9 11 13 15 17 19 21 23
Acknowledgements
Total
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10
Total
5
3
6
0
1 3 5 7 9 11 13 15 17 19 21 23
We gratefully acknowledge the support of Intelligent
Systems Center .
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