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Integrated active/reactive power scheduling of interdependent microgrid and EV fleets based on stochastic multi‐objective normalised normal constraint

Saffari, Mohammadali; Kia, Mohsen; Vahidinasab, Vahid; Mehran, Kamyar

Authors

Mohammadali Saffari

Mohsen Kia

Kamyar Mehran



Abstract

This study proposes an integrated framework for coordinated optimisation of the interdependent microgrid (MG) and electric vehicle (EV) fleet entities using the normalised normal constraint approach. By considering the active/reactive power management option of the bidirectional charger enabled EVs in the proposed model, the authors investigate the effectiveness of EV's integration in the presence of the techno-economical objective functions. This work concentrates on the trade-off analysis of two conflicting objectives, including the economic objective of the MG's operation cost minimisation and the technical objective of the MG's voltage deviation. Besides, they consider several uncertainty sources, e.g. wind, EV and solar panel (PV)power provision, as well as market price fluctuations in the proposed model affecting the aforementioned techno-economic trade-off solution. The proposed model is a stochastic multi-objective mixed-integer non-linear programming problem where the authors apply the designed integrated framework on a modified IEEE 18-bus test case in GAMS software. Through numerical results, they demonstrate MG optimal operation changes due to different MGO priorities and study the positive effects of EVs integrated energy management on the bi-objective operation.

Journal Article Type Article
Online Publication Date Apr 22, 2020
Publication Date 2020-06
Deposit Date Mar 5, 2025
Journal IET Generation, Transmission & Distribution
Print ISSN 1751-8687
Electronic ISSN 1751-8695
Publisher Wiley Open Access
Peer Reviewed Peer Reviewed
Volume 14
Issue 11
Pages 2055-2064
DOI https://doi.org/10.1049/iet-gtd.2019.1406