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用于自由空间光系统上毫米波无线电的无上行链路光源的全双工传输。

Full-duplex transmission without an uplink light source for a millimeter-wave radio over a free-space optical system.

作者信息

Zhang Shuai, Zhao Lun, Song Song, Guo Lei, Liu Yejun

出版信息

Appl Opt. 2022 Oct 1;61(28):8323-8332. doi: 10.1364/AO.472664.

Abstract

The radio over free-space optical (RoFSO) system is a promising alternative technique for mobile fronthaul networks such as aerial base stations where fiber link is unavailable to deploy. However, the full-duplex transmission imposes challenges on the design of the RoFSO system due to the additional structural complexity when ease-of-installation is a mandatory request. The interplay between the uplink and downlink for a simplified structure has been less investigated in related works. In this paper, we propose a full-duplex RoFSO transmission system structure in which the uplink light source is physically saved. The optical center carrier of the double-sideband (DSB) modulated signal in the downlink is extracted as the light source for the uplink, and thus the system complexity is reduced. In order to mitigate the permanence degradation of uplink transmission due to the attenuated light source, channel estimation and power pre-compensation are implemented without additional training symbols by utilizing the characteristics of the channel correlation between uplink and downlink and the information independence of optical center carrier in the DSB. The proposed channel estimation algorithm is verified theoretically and experimentally. The results show that the difference between uplink and downlink channel attenuation is -0.7. In case of the excessive power compensation and the resulting effects, a power control mechanism is introduced to the power pre-compensation. By using the power pre-compensation mechanism, the bit error rate (BER) can reach 1.58×10 and 3.8×10, respectively, under the channel conditions of medium turbulence and weak turbulence. Owing to the power control mechanism, the power saving rates of downlink and uplink are up to 78% and 67%.

摘要

自由空间光无线接入(RoFSO)系统是一种很有前景的替代技术,适用于诸如空中基站等无法部署光纤链路的移动前传网络。然而,由于在易于安装是强制要求的情况下存在额外的结构复杂性,全双工传输给RoFSO系统的设计带来了挑战。相关工作中对简化结构的上行链路和下行链路之间的相互作用研究较少。在本文中,我们提出了一种全双工RoFSO传输系统结构,其中物理上节省了上行链路光源。下行链路中双边带(DSB)调制信号的光中心载波被提取作为上行链路的光源,从而降低了系统复杂性。为了减轻由于光源衰减导致的上行链路传输性能永久性下降,利用上行链路和下行链路之间的信道相关性以及DSB中光中心载波的信息独立性,在不使用额外训练符号的情况下实现了信道估计和功率预补偿。所提出的信道估计算法在理论和实验上都得到了验证。结果表明,上行链路和下行链路信道衰减之间的差异为-0.7。在功率补偿过度及其产生的影响的情况下,在功率预补偿中引入了功率控制机制。通过使用功率预补偿机制,在中等湍流和弱湍流的信道条件下,误码率(BER)分别可以达到1.58×10和3.8×10。由于功率控制机制,下行链路和上行链路的功率节省率分别高达78%和67%。

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