A Linear Physical Programming Approach to Power Flow and Energy Storage Optimization in Smart Grids Models
Gabriella Dellino, Carlo Meloni, Saverio Mascolo
2015
Abstract
The Optimal Power Flow problem (OPF) plays a crucial role in the successful energy management of modern smart grids. The diffusion of renewable energy sources poses new challenges to the power grid in which integrated energy storage combined with green generation solutions can help to address challenges associated with both power supply and demand variability. This work refers to a smart grid context and proposes a time indexed OPF model considering storage dynamics, adopting a preference-based optimization method with chance constraints to provide a suitable service level.
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Paper Citation
in Harvard Style
Dellino G., Meloni C. and Mascolo S. (2015). A Linear Physical Programming Approach to Power Flow and Energy Storage Optimization in Smart Grids Models . In Proceedings of the International Conference on Operations Research and Enterprise Systems - Volume 1: ICORES, ISBN 978-989-758-075-8, pages 224-231. DOI: 10.5220/0005293602240231
in Bibtex Style
@conference{icores15,
author={Gabriella Dellino and Carlo Meloni and Saverio Mascolo},
title={A Linear Physical Programming Approach to Power Flow and Energy Storage Optimization in Smart Grids Models},
booktitle={Proceedings of the International Conference on Operations Research and Enterprise Systems - Volume 1: ICORES,},
year={2015},
pages={224-231},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0005293602240231},
isbn={978-989-758-075-8},
}
in EndNote Style
TY - CONF
JO - Proceedings of the International Conference on Operations Research and Enterprise Systems - Volume 1: ICORES,
TI - A Linear Physical Programming Approach to Power Flow and Energy Storage Optimization in Smart Grids Models
SN - 978-989-758-075-8
AU - Dellino G.
AU - Meloni C.
AU - Mascolo S.
PY - 2015
SP - 224
EP - 231
DO - 10.5220/0005293602240231