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Circuit-Model-Based Analysis of a Wireless Energy-Transfer System via Coupled Magnetic Resonances

机译:通过耦合磁共振的无线能量传输系统的基于电路模型的分析

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摘要

A simple equivalent-circuit model is developed for a wireless energy-transfer system via coupled magnetic resonances, and a practical design method is also provided. Node equations for the resonance system are built with the method, expanding on the equations for a transformer, and the optimum distances of the coils in the system are derived analytically for optimum coupling coefficients for high transfer efficiency. In order to calculate the frequency characteristics for a lossy system, the equivalent model is established at an electric-design automation tool. The model parameters of the actual system are extracted, and the modeling results are compared with measurements. Through the developed model, it is seen that the system can transfer power over a midrange of a few meters and that impedance matching is important to achieve high efficiency.
机译:通过耦合磁共振为无线能量传输系统开发了一个简单的等效电路模型,并提供了一种实用的设计方法。用该方法建立谐振系统的节点方程,在变压器方程的基础上进行扩展,并通过分析得出系统中线圈的最佳距离,以获得最佳耦合系数,从而提高传输效率。为了计算有损系统的频率特性,在电气设计自动化工具上建立了等效模型。提取实际系统的模型参数,并将建模结果与测量结果进行比较。通过开发的模型,可以看出该系统可以在几米的中间范围内传输功率,并且阻抗匹配对于实现高效率很重要。

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