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An analytical method to calculate winding resistance for planar coil with ferrite plate and litz wire in inductive power transfer

机译:计算铁氧体板和利兹线的平面线圈感应功率传递中绕组电阻的分析方法

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Planar coils with litz wires are used a lot in inductive power transfer for electric vehicles. When the litz wire is properly selected for the coil, the winding resistance is composed of DC resistance and proximity-effect resistance. The calculation of DC resistance is simple, using the cross-sectional area and the length of the wire, but the calculation of proximity-effect resistance is complicated, in which the magnetic fields across the turns of the winding are essential. When the ferrite plate is added to the planar coil in inductive power transfer to improve the quality factor and the coupling coefficient, the analytical derivation of the magnetic fields is even more complicated. In this paper, the method of image is applied to obtain the magnetic fields across the winding turns of the planar coil with ferrite plate. The ferrite plate is replaced by mirror turns, and the magnetic fields are calculated with Ampere's Law and Biot-Savart Law. In order to verify the accuracy of this method, an exemplary planar coil with litz wire and ferrite plate was fabricated and its resistance was measured. The difference between the calculated resistance and measured resistance is less than 10%.
机译:带有绞合线的平面线圈在电动汽车的感应功率传输中被大量使用。当适当地选择用于线圈的李兹线,绕组电阻是由直流电阻和邻近效应电阻。使用导线的横截面面积和长度计算直流电阻很简单,但是邻近效应电阻的计算很复杂,其中绕过绕组匝的磁场是必不可少的。当在感应功率传输中将铁氧体板添加到平面线圈中以改善品质因数和耦合系数时,磁场的分析推导甚至更加复杂。在本文中,应用图像方法来获得穿过带有铁氧体板的平面线圈的绕组匝的磁场。将铁氧体板替换为镜面匝,并根据安培定律和比奥-萨瓦特定律计算磁场。为了验证该方法的准确性,制造了具有绞合线和铁氧体板的示例性平面线圈,并测量了其电阻。计算的电阻与测量的电阻之间的差异小于10%。

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