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Comparison of digital signal processing approaches for subcarrier multiplexed 5G and beyond analog fronthaul

机译:子载波多路复用5G和超出模拟Fronthaul的数字信号处理方法的比较

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Analog fronthaul transport architectures with digital signal processing at the end stations are promising, as they have the potential to achieve high spectral efficiencies, increased flexibility, and reduced latency. In this paper, two digital techniques for frequency-domain multiplexing/demultiplexing large numbers of channels are contrasted: one operates on the pre-inverse fast Fourier transform (IFFT) "frequency-domain" samples, while the other does so on the post-IFFT "time-domain" samples. Performance criteria, including computational complexity and sampling rate requirements, are used in the comparison. Following modeling and simulation of the techniques, implemented within a radio-over-fiber transport architecture, error vector magnitude performance estimates are obtained. These results show that each technique has performance advantages under specific channel transport scenarios. (C) 2020 Optical Society of America
机译:模拟Fronthault架构在最终站的数字信号处理具有数字信号处理,因为它们有可能实现高光谱效率,增加灵活性和降低延迟。 在本文中,两种用于频域多路复用/解复用的数字技术对比:在预逆快速傅里叶变换(IFFT)“频域”样本上运行,而另一个在后面的情况下操作 IFFT“时间域”样本。 在比较中使用绩效标准,包括计算复杂性和采样率要求。 在无线电流传输架构内实现的技术的建模和仿真之后,获得误差矢量幅度性能估计。 这些结果表明,各技术在特定的渠道传输方案下具有性能优势。 (c)2020美国光学学会

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