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Evaluation of selective control information detection scheme in orthogonal frequency division multiplexing-based radio-over-fiber and visible light communication links

机译:基于正交频分复用的光纤和可见光通信链路中选择性控制信息检测方案的评估

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摘要

Block-level detection is required to decode what may be classified as selective control information (SCI) such as control format indicator in 4G-long-term evolution systems. Using optical orthogonal frequency division multiplexing over radio-over-fiber (RoF) links, we report the experimental evaluation of an SCI detection scheme based on a time-domain correlation (TDC) technique in comparison with the conventional maximum likelihood (ML) approach. When compared with the ML method, it is shown that the TDC method improves detection performance over both 20 and 40 km of standard single mode fiber (SSMF) links. We also report a performance analysis of the TDC scheme in noisy visible light communication channel models after propagation through 40 km of SSMF. Experimental and simulation results confirm that the TDC method is attractive for practical orthogonal frequency division multiplexing-based RoF and fiber-wireless systems. Unlike the ML method, another key benefit of the TDC is that it requires no channel estimation.
机译:需要块级检测来解码可分类为选择性控制信息(SCI)的内容,例如4G长期演进系统中的控制格式指示符。使用光纤正交(RoF)链路上的光正交频分复用,我们报告了基于时域相关(TDC)技术的SCI检测方案与常规最大似然(ML)方法相比的实验评估。与ML方法相比,可以看出TDC方法在20 km和40 km的标准单模光纤(SSMF)链路上均提高了检测性能。我们还报告了通过40公里的SSMF传播后,在嘈杂的可见光通信信道模型中TDC方案的性能分析。实验和仿真结果证实,TDC方法对于基于正交频分复用的实用RoF和光纤无线系统具有吸引力。与ML方法不同,TDC的另一个主要优点是它不需要信道估计。

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