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A ROF Access Network for Simultaneous Generation and Transmission Multiband Signals Based on Frequency Octupling and FWM Techniques

机译:基于频率八倍频和FWM技术的用于同时生成和发送多频带信号的ROF接入网

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We report a radio-over-fiber (ROF) access network with multiple high-repetive frequency mm-wave signals generation utilizing a dual-parallel Mach-Zehnder modulator (DP-MZM) and an semiconductor optical amplifier (SOA) for multiple base stations (BSs). In the scheme, at the central station (CS), signal and pump with frequency interval of 8 are generated by properly adjusting the parameters of the DP-MZM. After FWM in a SOA, new converted optical signals are obtained. Two tones of the optical signals are selected by using tunable optical filter (TOF), which are then sent into a photodiode (PD) to generate multiple mm-wave signals with different frequencies (8, 16, and 24) for different BSs. Based on the proposed scheme, the mm-wave signals with frequencies of 20, 40, and 60 GHz carrying 2.5 Gb/s signal by a 2.5GHz RF signal have been generated by numerical simulation. Simulation results show that the proposed ROF system architecture with multiple-frequency millimeter-wave signals generation serving multiple BSs can work well. This scheme can raise the capacity of ROF system, reduce the requirement of the repetitive frequency of the driven RF signal, and support multiple mm-wave wireless access for BSs.
机译:我们报告了利用双并行马赫曾德尔调制器(DP-MZM)和半导体光放大器(SOA)的多个基站生成的多个高重复频率毫米波信号的光纤无线电(ROF)接入网络(BS)。在该方案中,通过适当调整DP-MZM的参数,在中心站(CS)产生频率间隔为8的信号和泵。在SOA中进行FWM之后,可以获得新的转换后的光信号。通过使用可调光学滤波器(TOF)选择两个音调的光信号,然后将其发送到光电二极管(PD)中,以针对不同的BS生成具有不同频率(8、16和24)的多个毫米波信号。基于所提出的方案,已经通过数值模拟生成了频率为20、40和60 GHz的毫米波信号,该毫米波信号通过2.5 GHz RF信号承载2.5 Gb / s信号。仿真结果表明,所提出的具有服务于多个基站的多频毫米波信号生成的ROF系统架构可以很好地工作。该方案可以提高ROF系统的容量,降低对被驱动RF信号重复频率的要求,并支持BS的多个毫米波无线接入。

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