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A Linear-based Model for Multi-Microgrid Energy Sharing- A Western Australia Case Study
Conference proceeding

A Linear-based Model for Multi-Microgrid Energy Sharing- A Western Australia Case Study

Ali Azizivahed, S. Ehsan Razavi, Ali Arefi and Christopher Lund
PROCEEDINGS OF 2021 31ST AUSTRALASIAN UNIVERSITIES POWER ENGINEERING CONFERENCE (AUPEC)
Australasian Universities Power Engineering Conference
2021 31st Australasian Universities Power Engineering Conference (AUPEC) (Perth, WA, Australia, 26/09/2021–30/09/2021)
09/2021

Abstract

Energy & Fuels Engineering Engineering, Electrical & Electronic Science & Technology Technology
This paper proposes a model for energy sharing of interconnected microgrids (MGs), mainly where some MGs are owned by an entity, such as the government, which is the case study in Western Australia (WA). In the proposed model, MGs are able to trade energy among themselves when some of them have surplus generation, and others have lack of generations to meet their demand; however, they are obliged to pay for the use of distribution network, called network charge, and the share of network loss due to this energy transaction. In doing so, the network loss is taken into account and calculated through a power flow. The possibility of energy trading with the main grid is also considered through the wholesale electricity market. Considering the uncertainty of Photovoltaic (PV) generation and load involved, the decision making to inject or import energy to/from the main grid as well as to trade between MGs is obtained through a bi-level linear optimization. In the upper level, the distribution network operator intends to manage the energy exchange between MGs and energy trading with upstream grid, while in the lower level, each MG attempt to minimize its operational cost relating to PV and energy storage system (ESS). Finally, the proposed method is applied to a real project in Western Australia.

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UN Sustainable Development Goals (SDGs)

This output has contributed to the advancement of the following goals:

#7 Affordable and Clean Energy

Source: InCites

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