Title :
Reduction of magnetic emission by increasing secondary side capacitor for ferrite geometry based series-series topology for wireless power transfer to vehicles
Author :
Batra, Tushar ; Schaltz, Erik ; Seungyoung Ahn
Author_Institution :
Aalborg Univ., Aalborg, Denmark
Abstract :
Magnetic fields emitted by wireless power transfer to vehicles can potentially affect living organisms. As a result, minimizing the magnetic emissions without compromising with the power transferred is one of the most significant challenges in the success of this technology. Active and passive shielding methods are used for screening of the magnetic fields of this system. In this paper, a new active shielding design method for series-series topology of this technology has been presented. In this method, the secondary capacitor value is increased to reduce phase angle between the primary and secondary currents from the standard design. Therefore, a part of the secondary magnetic flux comes in phase opposition with the primary flux and the resultant field is reduced. Operation point is shifted with the new design from the maximum power transfer resonance point and hence the reflected resistance is reduced. In order to maintain the same power level, the primary current and voltage have to increased and decreased in the same proportion. Also, the primary capacitor needs to be increased for maintaining unity input power factor in the system. The above statements are provided first with help of analytical expressions and later substantiated with simulations. At the end, it is also shown that resonance in the system is still intact with this new design methodology.
Keywords :
electric vehicles; electromagnetic shielding; ferrites; inductive power transmission; magnetic fields; magnetic flux; active shielding methods; ferrite geometry; magnetic emission reduction; magnetic fields; passive shielding methods; primary magnetic flux; secondary capacitor value; secondary magnetic flux; secondary side capacitor; series-series topology; wireless power transfer; Capacitors; Coils; Ferrites; Magnetic fields; Magnetic flux; Magnetic noise; Magnetic shielding; Electric vehicle; Resonant converter; Wireless power transmission;
Conference_Titel :
Power Electronics and Applications (EPE'14-ECCE Europe), 2014 16th European Conference on
Conference_Location :
Lappeenranta
DOI :
10.1109/EPE.2014.6910892