Author:
Rigo-Mariani Remy,Roccuzzo Vincenzo,Sareni Bruno,Maurizio Repetto,Robaum Xavier
Abstract
Purpose
The paper presents the optimization of the power flows inside a microgrid with renewable sources and two kinds of storage. The considered microgrid consists in commercial buildings with maximum daily peak value of 50 kW, photovoltaic arrays with total capacity of 175 kW, a 50 kW/50 kWh high speed flywheel storage and a 50 kW/50 kWh set of Li-ion accumulators.
Design/methodology/approach
The power flows in the microgrid are optimized the day ahead at one hour discretization in order to minimize the electric bill. Several scheduling strategies are proposed for solving the corresponding optimization problem including standard deterministic methods, stochastic algorithms and hybrid heuristics.
Findings
All scheduling strategies investigated in the paper are compared with regard to their accuracy and computational time.
Originality/value
Beyond the comparison of different algorithms devoted to the power flow optimization problem, our approach also addresses the integration of battery ageing in the scheduling strategy.
Subject
Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications
Cited by
2 articles.
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1. Optimal Demand Response of Smart Buildings with Utilization of Renewable Energy Sources;2022 14th Electrical Engineering Faculty Conference (BulEF);2022-09-14
2. Operation of networked multi-carrier microgrid considering demand response;COMPEL - The international journal for computation and mathematics in electrical and electronic engineering;2019-03-04