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  4. Handling Large Power Steps In Real-time Microgrid Control Via Explicit Power Set-points
 
conference paper

Handling Large Power Steps In Real-time Microgrid Control Via Explicit Power Set-points

Rudnik, Roman  
•
Reyes Chamorro, Lorenzo Enrique  
•
Bernstein, Andrey  
Show more
Milanovic, Jovica
2017
Proceedings of the 2017 IEEE PES PowerTech
2017 IEEE PES PowerTech

We consider a microgrid with real-time control using explicit power-setpoints. Sudden power-steps, such as load disconnections or load in-rushes, directly affect the decisions of the microgrid controller that aims at avoiding voltage or line-ampacity violations. When trying to completely avoid these violations, the grid operation may be too restricted, which may lead to large suboptimality. However, temporary violations of the steady-state bounds are allowed by grid standards and could enable the exploitation of the flexibility of other resources to better control the system's state. In this paper, we propose a method by which such temporary violations are controlled so that they remain within the limits imposed by grid standards and safe operation. The method is experimentally tested and validated on a real microgrid.

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Type
conference paper
DOI
10.1109/PTC.2017.7980987
Web of Science ID

WOS:000411142500199

Author(s)
Rudnik, Roman  
Reyes Chamorro, Lorenzo Enrique  
Bernstein, Andrey  
Le Boudec, Jean-Yves  
Paolone, Mario  
Editors
Milanovic, Jovica
Date Issued

2017

Publisher

IEEE

Publisher place

New York

Published in
Proceedings of the 2017 IEEE PES PowerTech
ISBN of the book

978-1-5090-4237-1

Total of pages

6

Start page

1

End page

6

Subjects

real-time control

•

power steps

•

microgrid

•

explicit power-setpoints

•

soft operational-constraints

•

epfl-smartgrids

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCA2  
DESL  
Event nameEvent placeEvent date
2017 IEEE PES PowerTech

Manchester, UK

June 18-22, 2017

Available on Infoscience
March 2, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/134935
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