论文标题
基于超材料的无线功率传输的等效电路建模和分析
Equivalent Circuit Modeling and Analysis of Metamaterial Based Wireless Power Transfer
论文作者
论文摘要
在这项研究中,提出了等效电路模型,以模仿基于超材料的无线电源传输系统的行为。为此,提出的系统的电磁场模拟是在ANSYS高频结构模拟器中进行的。此外,还探索了所提出的结构的数值分析,以评估其传递特性。提出的结构的功率传递效率由传输散射参数表示。尽管某些方法(包括干扰理论和有效培养基理论)已被利用以解释基于MM的WPT系统的物理机制,但一些反应性参数和基本的物理解释尚未清楚地阐明。与现有的理论模型相反,所提出的方法着重于系统参数的效果,并转移线圈对系统传输特性及其在分析复杂电路中的有效性。系统传输特性的数值解,包括散射参数和功率传递效率。基于数值估计的计算结果验证了全波电磁模拟结果,从而有效验证了分析模型的准确性。
In this study, an equivalent circuit model is presented to emulate the behavior of a metamaterial-based wireless power transfer system. For this purpose, the electromagnetic field simulation of the proposed system is conducted in ANSYS high frequency structure simulator. In addition, a numerical analysis of the proposed structure is explored to evaluate its transfer characteristics. The power transfer efficiency of the proposed structure is represented by the transmission scattering parameter. While some methods, including interference theory and effective medium theory have been exploited to explain the physics mechanism of MM-based WPT systems, some of the reactive parameters and the basic physical interpretation have not been clearly expounded. In contrast to existing theoretical model, the proposed approach focuses on the effect of the system parameters and transfer coils on the system transfer characteristics and its effectiveness in analyzing complex circuit. Numerical solution of the system transfer characteristics, including the scattering parameter and power transfer efficiency is conducted in Matlab. The calculation results based on numerical estimation validates the full wave electromagnetic simulation results, effectively verifying the accuracy of the analytical model.