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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Theory of Image Impedance Matching for Inductively Coupled Power Transfer Systems
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Theory of Image Impedance Matching for Inductively Coupled Power Transfer Systems

机译:感应耦合功率传输系统的图像阻抗匹配理论

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摘要

The optimum design of an inductively coupled power transfer system is accomplished by applying the Roberts's theory on conjugate image impedance. The input and output ports' impedance and the loading capacitances for maximum power transfer are obtained as functions of the self-inductances, the mutual inductance, the copper losses, and the iron loss, which are used to define the figure-of-merit of the system. It is found that the loading capacitances necessarily satisfy the resonance conditions individually in the input and output circuits. The capacitors may be connected in series or in parallel. The equivalent transform formulas between the series and parallel topologies are given for the capacitances and for the port impedances. The port impedance in the series (parallel) topology is proportional (approximately inversely proportional) to the inductive coupling coefficient. The image impedances of the lossless symmetric systems are real or pure imaginary depending on the frequency, and the image impedance patterns are classified as “Hill,” “Valley,” and “Waterfall.” The reactance network approach for such lossless systems gives in-depth insight into the system behaviors and facilitates the practical design.
机译:感应耦合功率传输系统的最佳设计是通过应用罗伯茨关于共轭图像阻抗的理论来完成的。获得输入和输出端口的阻抗以及最大功率传输的负载电容,这些电容是自感,互感,铜损和铁损的函数,用于定义电容的品质因数。系统。已经发现,负载电容必须分别满足输入和输出电路中的谐振条件。电容器可以串联或并联连接。给出了串联和并联拓扑之间等效的电容和端口阻抗转换公式。串联(并联)拓扑中的端口阻抗与电感耦合系数成正比(近似成反比)。无损对称系统的图像阻抗取决于频率是实数还是纯虚数,并且图像阻抗模式分为“山丘”,“谷”和“瀑布”。这种无损系统的电抗网络方法可深入了解系统行为,并有助于实际设计。

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