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Cyclic-Prefixed System with PAM using DFE and THP for Uplink Transmission in LiFi

机译:使用DFE和THP的带有PAM的循环前缀系统在LiFi中进行上行传输

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In this paper, a cyclic-prefixed (CP) system with pulse amplitude modulation (PAM) for uplink transmission in light-fidelity (LiFi) is discussed. LiFi supports bi-directional transmission, i.e., downlink and uplink transmissions. However, there have been only a few studies on uplink LiFi despite the fact that the uplink traffic demand increases due to frequent use of, for example, video call and live streaming services. The uplink transmission is designed such that a transmitter has a low peak-to-average ratio as well as a lower computational complexity using a CP in conjunction with PAM. We investigate three different schemes, namely linear equalization (LE) where only a feedforward filter is applied, decision feedback equalization (DFE) where a feedback filter is added at the receiver and Tomlinson-Harashima precoder (THP) where a feedback filter is added at the transmitter. Both feedforward and feedback filters are jointly optimized. In addition, we consider an optical wireless channel with reflections, randomly-located and randomly-oriented user equipment, a human body acting as a reflector and a limited linear dynamic range of a light emitting diode. We conclude that a DFE system is suitable in a low spectral efficiency region, where, compared to an LE system, up to 4 dB gain is achieved. A THP system is suitable for a high spectral efficiency region, where up to 5 dB gain compared to the LE and DFE systems is achieved.
机译:本文讨论了一种在光保真度(LiFi)中用于上行传输的带有脉冲幅度调制(PAM)的循环前缀(CP)系统。 LiFi支持双向传输,即下行链路和上行链路传输。然而,尽管事实上由于频繁使用例如视频呼叫和实时流服务而导致上行链路业务需求增加,但对上行链路LiFi的研究很少。上行链路传输被设计为使得使用CP结合PAM的发射机具有较低的峰均比以及较低的计算复杂度。我们研究了三种不同的方案,即仅应用前馈滤波器的线性均衡(LE),在接收机处添加反馈滤波器的决策反馈均衡(DFE)和在以下位置添加反馈滤波器的Tomlinson-Harashima预编码器(THP)发射器。前馈和反馈滤波器都经过了共同优化。另外,我们考虑具有反射的光学无线信道,随机放置和随机定向的用户设备,充当反射器的人体以及发光二极管的有限线性动态范围。我们得出的结论是,DFE系统适合于低频谱效率区域,与LE系统相比,该区域可实现高达4 dB的增益。 THP系统适用于高频谱效率区域,与LE和DFE系统相比,该区域可实现高达5 dB的增益。

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