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Optimal Coil Design for Maximum Power Transfer Efficiency in Resonantly Coupled Systems

机译:谐振耦合系统中最大功率传输效率的最佳线圈设计

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Maintaining maximum power transfer efficiency (PTE) is one of the main challenges in resonant inductive power transfer (IPT) systems. Maximum PTE can be achieved if the coupling between transmitter and receiver coils is strong. One way of achieving this is to geometrically optimise a coil by employing small ohmic resistance combined with high self-inductance. In this paper a design method for an optimum coil geometry which offers maximum PTE has been introduced. The proposed technique, in addition to minimising the system's physical size, provides high level of PTE for both strongly- and loosely-coupled links. A design example for a typical IPT system is presented that shows, with a proper selection of strong coupling factor (e.g.: C = 220.), the designed coil geometry can provide maximum PTE of 95.4% for coupling coefficient K = 1. Also, for a loose inductive link with K = 0.215, maximum calculated and measured PTE values are 89% and 86%, respectively.
机译:维持最大功率传输效率(PTE)是谐振感应功率传输(IPT)系统的主要挑战之一。如果发射器线圈和接收器线圈之间的耦合牢固,则可以实现最大PTE。实现此目的的一种方法是通过采用小欧姆电阻和高自感来对线圈进行几何优化。在本文中,介绍了一种用于提供最大PTE的最佳线圈几何形状的设计方法。除了使系统的物理尺寸最小之外,所提出的技术还为强耦合和松耦合链路提供了高水平的PTE。对于一个典型的IPT系统的设计实例被呈现该节目,以强耦合因子的适当选择(例如:C = 220),所设计的线圈几何结构可以用于耦合系数K = 1。另外提供的95.4%的最大PTE,对于K = 0.215的松散电感链路,最大计算和测量PTE值分别为89%和86%。

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