4.7 Article

Optimal Power Flow Management for Grid Connected PV Systems With Batteries

Journal

IEEE TRANSACTIONS ON SUSTAINABLE ENERGY
Volume 2, Issue 3, Pages 309-320

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TSTE.2011.2114901

Keywords

Batteries; dynamic programming (DP); energy management; optimization; photovoltaic (PV) power systems; storage

Funding

  1. Agency of Environement and Energie Management (ADEME), France

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This paper presents an optimal power management mechanism for grid connected photovoltaic (PV) systems with storage. The objective is to help intensive penetration of PV production into the grid by proposing peak shaving service at the lowest cost. The structure of a power supervisor based on an optimal predictive power scheduling algorithm is proposed. Optimization is performed using Dynamic Programming and is compared with a simple ruled-based management. The particularity of this study remains first in the consideration of batteries ageing into the optimization process and second in the day-ahead approach of power management. Simulations and real conditions application are carried out over one exemplary day. In simulation, it points out that peak shaving is realized with the minimal cost, but especially that power fluctuations on the grid are reduced which matches with the initial objective of helping PV penetration into the grid. In real conditions, efficiency of the predictive schedule depends on accuracy of the forecasts, which leads to future works about optimal reactive power management.

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