论文标题

时间变化的组件,用于增强无线电源和信息的无线传输

Time-varying components for enhancing wireless transfer of power and information

论文作者

Jayathurathnage, Prasad, Liu, Fu, Mirmoosa, Mohammad S., Wang, Xuchen, Fleury, Romain, Tretyakov, Sergei A.

论文摘要

电磁系统组件的时间调制为在时间和频域中以期望的方式来设计这些系统的响应提供了极大的机会。对于工程时间调制的系统,需要彻底研究基本概念并了解时间调制的显着特征。在本文中,我们仔细研究了基本散装电路元件的物理模型(电容器,电感器和电阻器)为频率分散和随时间变化的组件,并在定期时间调制的情况下研究其效果。我们开发了一个可靠的理论来理解这些元素,并将其应用于两个重要的应用:无线功率传输和天线。对于第一个应用,我们表明,通过定期调节发射器和接收器之间的相互电感,可以克服经典无线功率传输系统的基本限制。关于第二个应用,我们考虑了电动小偶极天线的时变源,并显示时间调制如何增强天线性能。由时间调制设计的电磁系统的开发理论适用于无线电频率到光波长。

Temporal modulation of components of electromagnetic systems provides an exceptional opportunity to engineer the response of those systems in a desired fashion, both in the time and frequency domains. For engineering time-modulated systems, one needs to thoroughly study the basic concepts and understand the salient characteristics of temporal modulation. In this paper, we carefully study physical models of basic bulk circuit elements -- capacitors, inductors, and resistors -- as frequency dispersive and time-varying components and study their effects in the case of periodical time modulations. We develop a solid theory for understanding these elements, and apply it to two important applications: wireless power transfer and antennas. For the first application, we show that by periodically modulating the mutual inductance between the transmitter and receiver, the fundamental limits of classical wireless power transfer systems can be overcome. Regarding the second application, we consider a time-varying source for electrically small dipole antennas and show how time modulation can enhance the antenna performance. The developed theory of electromagnetic systems engineered by temporal modulation is applicable from radio frequencies to optical wavelengths.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源