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Performance analysis of UFMC waveform in graded index fiber for 5G communications and beyond

机译:5G通信和超出分级指数光纤中UFMC波形的性能分析

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摘要

For the first time, we demonstrate in this paper an intensity-modulation direct-detection (IMDD) universal filtered multi-carrier (UFMC) system through several hundred meters of multimode fiber (MMF) that can be adopted for 5G communications and beyond. The proposed system is simulated and evaluated in terms of bit error rate (BER), Q factor, out of band (OOB) emission and Peak-to-Average Power Ratio (PAPR), at a data rate of 10 Gb/s. It is shown that filtering used with UFMC reduces the OOB radiation by 40 dB compared to orthogonal frequency division multiplexing (OFDM). Moreover, we prove that UFMC gives lower values of BER than OFDM, and even if the PAPR ratio of UFMC is higher than OFDM, the gap remains small. The results also show that using a Volterra equalizer with increasing taps enables to obtain acceptable performance through the MMF in terms of BER, even with high number of excited mode groups.
机译:首次,我们在本文中展示了一种强度调制直接检测(IMDD)通用过滤的多载波(UFMC)系统,通过数百米的多模光纤(MMF),可以采用5G通信和超越。 在误码率(BER),Q因子,带(OOB)发射和峰值平均功率比(PAPR)的数据速率下,模拟和评估所提出的系统,以10GB / s的数据速率。 结果表明,与UFMC一起使用的滤波与正交频分复用(OFDM)相比将OOB辐射减小40dB。 此外,我们证明了UFMC提供了比OFDM更低的BER值,即使UFMC的PAPR比率高于OFDM,间隙仍然很小。 结果还表明,即使具有大量激励模式组,使用Volterra均衡器可以通过MMF获得可接受的性能。

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