Optimal sizing and energy management of hybrid storage systems

R de Castro, C Pinto, RE Araújo… - 2012 IEEE vehicle …, 2012 - ieeexplore.ieee.org
R de Castro, C Pinto, RE Araújo, P Melo, D Freitas
2012 IEEE vehicle power and propulsion conference, 2012ieeexplore.ieee.org
This paper targets the development of hybrid energy storage systems (ESS), based on the
batteries-supercapacitors blending. In particular, we will develop two methodologies for the
combined sizing/energy management of hybrid ESS. The first method assumes that the
division of power between the sources is performed through low/high pass filters, which
allow us to evaluate, in a simple and rapid way, the trade-offs and economic gains due to the
hybridization. The second approach relies on a nonlinear optimization problem, and seeks …
This paper targets the development of hybrid energy storage systems (ESS), based on the batteries-supercapacitors blending. In particular, we will develop two methodologies for the combined sizing/energy management of hybrid ESS. The first method assumes that the division of power between the sources is performed through low/high pass filters, which allow us to evaluate, in a simple and rapid way, the trade-offs and economic gains due to the hybridization. The second approach relies on a nonlinear optimization problem, and seeks the minimization of the installation and electrical charging costs of the sources. Simulation results reveal the existence of a threshold in the EV range, from which the introduction of the supercapacitors is less beneficial in economic terms.
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