A distributed wardrop control algorithm for load balancing in smart grids. Suraci, V., Celsi, L., Giuseppi, A., & Di Giorgio, A. 2017. doi abstract bibtex This paper presents a distributed strategy for load balancing in a smart grid, modeling demand and supply as a networked dynamical system. The algorithm, which is characterized by point-to-point communications among agents implemented at the level of local energy management systems, is proven to converge to a Wardrop equilibrium. Numerical simulations of realistic scenarios are reported to show the effectiveness of the proposed approach. © 2017 IEEE.
@CONFERENCE{Suraci2017761,
author={Suraci, V. and Celsi, L.R. and Giuseppi, A. and Di Giorgio, A.},
title={A distributed wardrop control algorithm for load balancing in smart grids},
journal={2017 25th Mediterranean Conference on Control and Automation, MED 2017},
year={2017},
pages={761-767},
doi={10.1109/MED.2017.7984210},
art_number={7984210},
scopus={https://www.scopus.com/inward/record.uri?eid=2-s2.0-85027893875&doi=10.1109%2fMED.2017.7984210&partnerID=40&md5=833313e2da06023f9507cdb5a7b1b6a7},
abstract={This paper presents a distributed strategy for load balancing in a smart grid, modeling demand and supply as a networked dynamical system. The algorithm, which is characterized by point-to-point communications among agents implemented at the level of local energy management systems, is proven to converge to a Wardrop equilibrium. Numerical simulations of realistic scenarios are reported to show the effectiveness of the proposed approach. © 2017 IEEE.},
document_type={Conference Paper},
source={Scopus},
}
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