In this work we analyse and demonstrate the coexistence of digital coherent and analogue radio over fibre signals over an access-metro transmission network and field fibre. We analyse how the spectral proximity of the two signals and the non-ideal filter alignment of typical telecomms-grade ROADMs affect the signal performance. Our results show that coexistence is indeed possible, although performance deteriorates with the increase in number of ROADMs in the network topology. Thus, while todays access-metro networks will be able to support future 5.5 and 6G cell densification operating at mmWave and THz frequency, using spectral efficient analogue radio over fibre transmission, there will be trade-offs to be considered. In our experiment setup, we show that the limit for ARoF accessible performance is reached after transmission over 3 ROADMs and a total of 49 km of fibre.
翻译:在这项工作中,我们分析并展示了数字一致和模拟无线电在存取式气象传输网络和实地纤维上对纤维信号的共存情况。我们分析了这两个信号的光谱相近性和典型的电信级ROADMs的非理想过滤性校准如何影响信号性能。我们的结果表明,共存确实有可能,尽管随着网络地形结构中ROADMs数量的增加,情况恶化了。因此,虽然今天的存取式气象网络将能够利用光谱高效模拟无线电对纤维传输进行5.5和6G电池密度化,但利用光谱高效模拟无线电对毫米Wave和Thz频率进行操作,将会出现权衡。在我们的实验设置中,我们表明在超过3ROADMs和总共49公里的纤维传输后,AROF无障碍性能的极限已经达到。