Title :
Analysis of the coreless transformer in wireless battery vehicle charger
Author :
Jabri, Ihssen ; Ghodbane, Fethi ; Bouallegue, Adel ; Khedher, Adel
Author_Institution :
Electr. Syst. Lab. (LSE), Univ. of Elmanar, Tunisia
Abstract :
This paper mainly concentrates on development of fundamental theory associated to wireless power transfer application, specifically the wireless battery charger of electric vehicles. The primary core of the coreless transformer is integrated in the charger unit and the secondary core in the electric vehicle. In order to reach efficient power transfer through a large air gap between the windings of the wireless power transfer transformer, the principle of coupling magnetic resonance is used. Analysis of wireless charger battery coreless transformer of electric vehicle is performed through several simple and accurate expressions linked to the electric modeling. A capacitive compensation in primary and secondary winding is added to enhance the power transfer capability offering four topology cases (Parallel-Parallel, Series-Series, Series-Parallel, and Parallel-Series). Simulation results are performed for each case to compare their performances. The study shows the dominance of the Series-Parallel topology in energy efficiency point of view and thus the transmitted power yield over the same distance.
Keywords :
battery chargers; battery powered vehicles; power transformers; transformer windings; air gap; capacitive compensation; charger unit; coupling magnetic resonance; electric modeling; electric vehicles; parallel-parallel topology; parallel-series topology; power transfer capability; primary winding; secondary core; secondary winding; series-parallel topology; series-series topology; windings; wireless battery vehicle charger; wireless charger battery coreless transformer; wireless power transfer; wireless power transfer transformer; Couplings; Impedance; Inductance; Topology; Transformer cores; Vehicles; Wireless communication; compensation topology; coreless transformer; electric vehicle; power efficiency; wireless battery charger;
Conference_Titel :
Ecological Vehicles and Renewable Energies (EVER), 2014 Ninth International Conference on
Conference_Location :
Monte-Carlo
Print_ISBN :
978-1-4799-3786-8
DOI :
10.1109/EVER.2014.6844054