High communication speed and sufficient energy supply are the directions of technological development. Energy and information available anywhere and anytime has always been people's good wishes. On this basis, resonant beam system (RBS) has demonstrated its unique superiority in meeting the needs for energy and communication. The previous work has mostly focused on the analysis of charging performance of RBS and its steady-state characteristics. In order to analyze the communication performance of RBS more thoroughly, we propose a resonant beam charging and communication (RBCC) system and use the equivalent circuit analysis method to conduct transient analysis on it. The equivalent circuit reveals the dynamic establishment process of the resonant beam from scratch, which facilitates the analysis of the relaxation oscillation process and a deeper understanding of the energy transmission and communication performance. In addition, we explore the energy transmission and communication performance of the RBCC under different energy allocation strategies.
翻译:高通信速度和充足的能源供应是技术发展的方向; 能源和信息在任何地方和任何时间都一直是人们的良好愿望; 在此基础上,共振波束系统(RBS)在满足能源和通信需要方面表现出其独特的优势; 以往的工作主要侧重于分析RBS的收费性能及其稳定状态特点; 为了更透彻地分析RBS的通信性能,我们建议采用共振波束充电和通信系统(RBCC),并使用等效的电路分析方法对它进行瞬时分析; 等效电路显示共振波束从零开始的动态建立过程,这有利于分析放松振动过程,加深对能源传输和通信性能的了解; 此外,我们还探索RBCC不同的能源配置战略下的RBC的能源传输和通信性能。