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Proceedings ArticleDOI

Coordinated Energy Management of a Team of Cooperative Microgrids

TLDR
Within this stochastic framework, a power exchange model is embedded that allows local power exchanges between neighboring microgrids, with the aim of optimally alleviating the power losses due to power flows across the network.
Abstract
This paper proposes an energy management framework for a distribution system comprising of multiple cooperative microgrids. The energy management framework aims at reducing the energy cost of the microgrids by minimizing the grid purchases which comprises of conventional generation. The intermittencies associated with renewable energy based-energy sources are modelled in the proposed framework through scenarios. Within this stochastic framework, a power exchange model is embedded that allows local power exchanges between neighboring microgrids, with the aim of optimally alleviating the power losses due to power flows across the network. Extensive numerical results are shown to corroborate the efficacy of the proposed framework.

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References
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Book

Decision Making Under Uncertainty in Electricity Markets

TL;DR: In this paper, the authors consider stochastic programming models for decision-making under uncertainty in the context of electricity markets and provide a brief overview of modeling and solution techniques within a mathematical programming framework.
Posted Content

Decision Making Under Uncertainty in Electricity Markets

TL;DR: In this paper, the authors consider stochastic programming models for decision-making under uncertainty in the context of electricity markets and provide a brief overview of modeling and solution techniques within a mathematical programming framework.
Journal ArticleDOI

Optimal Bidding Strategy for Microgrids Considering Renewable Energy and Building Thermal Dynamics

TL;DR: An optimal day-ahead price-based power scheduling problem for a community-scale microgrid (MG) is studied and the great benefits in exploiting the building thermal dynamics and the flexibility of the proposed scheduling method in achieving different practical design tradeoffs are presented.
Proceedings ArticleDOI

Coalitional Game Theory for Cooperative Micro-Grid Distribution Networks

TL;DR: Simulation results show that the proposed algorithm yields a reduction in terms of the average power losses (over the distribution line) per micro-grid, reaching up to 31% improvement relative to the non-cooperative case.
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