Center of Excellence On Applied Electromagnetic Systems, School of ECE, College of Engineering, University of Tehran, Tehran, Iran.
Sci Rep. 2023 Feb 2;13(1):1930. doi: 10.1038/s41598-023-28925-1.
This article presents a technique for controlling energy coupling in a coupled transmission line system based on the space-time modulation concept. The per-unit-length mutual capacitance and mutual inductance of the structure are modulated in space and time. The main idea is based on the harmonic generation property of space-time modulated media. As the amplitude of harmonics is a function of modulation parameters it is demonstrated that by choosing an appropriate space-time modulation scheme energy of different harmonics can be engineered leading to crosstalk reduction. In the quest for designing an effective space-time modulation scheme, an analytical method is developed for the examination of the space-time modulated coupled transmission line. The proposed method which is based on the state space formulation and benefits from the coupled mode theory is fast and accurate making it feasible for design problems. To validate the proposed analytical method, a full-wave simulation method has been used. The time-varying nature of the problem makes the finite-difference-time-domain the most appropriate choice. The validity of the analytical method is rigorously verified against the developed finite-difference-time-domain technique. The interest in circuit design techniques in an IC-compatible fashion in microwave circuits and the introduction of tunable material such as graphene in the THz regime leads to a positive future for the proposed space-time modulation-based crosstalk reduction method.
本文提出了一种基于时空调制概念的控制耦合传输线系统能量耦合的方法。该结构的单位长度互电容和互感在空间和时间上进行调制。其主要思想基于时空调制媒质的谐波产生特性。由于谐波的幅度是调制参数的函数,因此可以证明,通过选择适当的时空调制方案,可以对不同谐波的能量进行工程设计,从而降低串扰。在寻求设计有效的时空调制方案时,提出了一种用于分析时空调制耦合传输线的解析方法。该方法基于状态空间公式,并受益于耦合模理论,速度快且准确,适用于设计问题。为了验证所提出的分析方法,已经使用了全波仿真方法。由于问题的时变性质,使得时域有限差分法成为最合适的选择。该分析方法的有效性经过与所开发的时域有限差分技术的严格验证。在微波电路中采用与集成电路兼容的电路设计技术以及在太赫兹频段引入可调谐材料(如石墨烯)的兴趣,为基于时空调制的串扰降低方法带来了积极的未来。