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Receiver coil parameter optimization process for the efficiency of an implantable Inductive Power Transfer system

机译:接收器线圈参数优化过程可提高植入式感应功率传输系统的效率

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In order to develop a high power transmission efficiency for an Inductive Power Transfer (IPT) system especially the parameters of the receiver (RX) coil have to be analyzed in detail. This becomes essential, when the RX coil is part of a medical implant and dramatically limited in size. The parameters, which completely describe a coil, are its inductance and ohmic losses. Both values are just dependent on a few geometrical and material parameters, i.e. filling factor, diameter of the wire, outer radius, inner radius and length of the coil, as well as the length and the initial permeability of the utilized ferrite rod. This study shows that, the two latter parameters have both to be maximal to reach the highest efficiency of the system. The effect of the remaining parameters on the system efficiency in a predefined parameter's range can be summarized as follows: optimal points for the inner and outer radius as well as for the length of the coil have been found, while for the filling factor an analytical expression has been found to show that it has to be maximized to get the best efficiency. Finally, the wire diameter that was found to be the most critical parameter can be optimized for a given set of parameters by calculating an optimal value for the ohmic losses of the RX coil.
机译:为了开发用于感应功率传输(IPT)系统的高功率传输效率,特别是必须详细分析接收器(RX)线圈的参数。当RX线圈是医疗植入物的一部分并且尺寸受到极大限制时,这变得至关重要。完整描述一个线圈的参数是其电感和欧姆损耗。这两个值仅取决于一些几何和材料参数,即填充系数,导线的直径,外半径,内半径和线圈的长度,以及所用铁氧体棒的长度和初始磁导率。这项研究表明,后两个参数都必须最大化才能达到系统的最高效率。在预定义参数范围内,其余参数对系统效率的影响可总结如下:找到了内半径和外半径以及线圈长度的最佳点,而对于填充系数,则为解析表达式已经发现,必须将其最大化才能获得最佳效率。最后,可以通过计算RX线圈的欧姆损耗的最佳值,对给定的一组参数优化被发现是最关键参数的线径。

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