L. Combi, A. Gatto, M. Martinelli, P. Parolari, U. Spagnolini
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引用次数: 0

摘要

脉冲宽度调制(PWM)最近被提出用于集中式无线接入网(CRANs)中的模拟光前路,以避免数字前路(例如公共无线电接口协议CPRI)的带宽扩展。在发送端,无线电信号被映射到一个开/关键光信号的持续时间,而在光纤接收端,每个PW光调制样本被数字化,因此整个模拟通信链路是透明的。在这个框架中,我们提出了一种新的PW调制信号光传输架构,该架构基于基带单元(BBU)产生的播种信号在远程天线中的反射。通过对实验室实验结果的研究,评估了反射无源光网络(PON)中PWM前移的优缺点,该实验实现了100 mhz射频信号的CRAN前移,单载波64QAM调制,最大传输距离为20公里标准单模光纤。实验结果为PWM前调技术提供了一定的讨论空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PWM fronthauling in reflective PON
Pulse width modulation (PWM) has recently been proposed for analog optical fronthauling in centralized radio access networks (CRANs) to avoid the bandwidth expansion of digital fronthauling (e.g., common public radio interface protocol, CPRI). At the transmitter, the radio-signal is mapped onto the duration of an on/off keyed optical signal, while at the fiber receiving-end each PW optical modulated sample is digitized so that the overall analog communication link is transparent. In this framework, we propose a new architecture for optical transmission of PW modulated signals, based on the reflection at the remotized antennas of a seeding signal originated at the baseband unit (BBU). Pros and cons of PWM fronthauling in reflective passive optical network (PON) are evaluated by investigating the outcomes of an in-lab experiment that implements a CRAN fronthauling of 100-MHz RF signals with single-carrier 64QAM modulation up to 20-km standard single mode fiber. Experimental results provide some room for discussion on PWM fronthauling technique.
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