Distribution of Microwave Signals Using Space Division Multiplexing Technique

J. R. Warnes-Lora, B. Tshibangu-Mbuebue, J. Rodríguez-Asomoza, A. García-Juárez, I. Zaldívar-Huerta
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Abstract

This work describes the use of a photonic lantern (PL) acting as a multiplexer to distribute microwave signals. The microwave signals are coded on filtered passband signals. The passband signals are obtained by using a Microwave Photonic Filter (MPF) whose operation is based on the use of the chromatic dispersion parameter of the optical fiber. The PL transmits RF signals centered at 1.29 GHz, 2.59 GHz, and 3.88 GHz. This proposal is situated in the area of Space Division Multiplexing (SDM). Computer-Aided Design (CAD) is used to demonstrate the transmission of microwave signals using the LP01, LP11a, and LP11b modes. In particular, a series of numerical simulations using the VPIphotonics Software is carried out. Simulation results are corroborated by a series of experiments. The measurement of the Signal-to-Noise-Ratio (SNR) parameter is used to evaluate the quality of the microwave transmitted signals.
利用空分复用技术实现微波信号的分布
这项工作描述了使用光子灯(PL)作为一个多路复用器来分配微波信号。微波信号在滤波通带信号上编码。通过使用微波光子滤波器(MPF)获得通带信号,该滤波器的工作原理基于光纤的色散参数。PL发送以1.29 GHz、2.59 GHz和3.88 GHz为中心的射频信号。该提案位于空分复用(SDM)领域。计算机辅助设计(CAD)用于演示微波信号在LP01、LP11a和LP11b模式下的传输。特别地,利用VPIphotonics软件进行了一系列数值模拟。仿真结果得到了一系列实验的验证。信噪比(SNR)参数的测量是评价微波传输信号质量的重要指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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