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An All-photonic Digital Radio over Fiber architecture

机译:光纤架构全光子数字无线电

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Radio over Fiber (RoF) technology uses optical fiber links to distribute RF signals from a central station to multiple remote access units due to its ability to provide simple antenna front ends, increased capacity, and multi radio wireless access coverage. In this paper, an All-photonic Digital Radio over Fiber (DRoF) architecture is proposed and its performance is individually investigated in a dedicated and an integrated fiber link and compared with an Analog Radio over Fiber (ARoF) and Baseband over Fiber communication systems. Link's performance is investigated in the presence of other channels interference and Mode-locked Laser Diode pulse trains with about overall 1 picoseconds timing jitter. Simulation results proved that the proposed All-Photonic DROF is a suitable candidate for very high sampling rate of the digital optical links and is more robust against channel interferences than Analog Radio over Fiber (ARoF).
机译:光纤无线电(RoF)技术使用光纤链路将来自中央站的RF信号分配到多个远程访问单元,这是因为它具有提供简单的天线前端,增加容量以及提供多无线电无线访问覆盖的能力。本文提出了一种全光子光纤数字无线电(DRoF)架构,并在专用和集成光纤链路中对其性能进行了单独研究,并将其与模拟光纤无线电(ARoF)和基带光纤通信系统进行了比较。在存在其他通道干扰和锁模激光二极管脉冲序列(总时序抖动约为1皮秒)的情况下,对Link的性能进行了研究。仿真结果证明,所提出的全光子DROF是非常适合数字光链路采样率的候选者,并且比光纤模拟无线电(ARoF)具有更强的抗信道干扰能力。

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