Computational design of power transmission symmetric antenna system

K. Takei
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Abstract

Computational design of a symmetric antenna system for wireless power transmission is proposed. The pair of antennas, which consist of small conductive segments, provides the two-port circuit of which ports are feeding points of the antennas. The two-port parameters of this circuit, which are obtained using the method of moments, and the complex impedance of both the power generating and loading circuits enable calculation of the power transmission efficiency. Repetition of the random generation of the segments and numerical calculation of the efficiency provides the antenna design. The numerical results of an example antenna system indicate that the efficiency strongly depends on the value of the real part of the impedance; therefore, precise control of this value is required to maintain better power transmission efficiency.
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输电对称天线系统的计算设计
提出了一种用于无线电力传输的对称天线系统的计算设计。这对天线由小的导电段组成,提供双端口电路,其中端口是天线的馈电点。利用矩量法得到的电路双端口参数,以及发电电路和负载电路的复杂阻抗,可以计算出功率传输效率。重复随机生成的片段和效率的数值计算提供了天线的设计。一个实例天线系统的数值计算结果表明,效率很大程度上取决于阻抗实部的值;因此,需要精确控制该值,以保持较好的动力传输效率。
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