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FSK signal generation with wavelength reuse capability in 8 Gbit/s radio over fiber systems

机译:在光纤系统的8 Gbit / s无线电中具有波长复用功能的FSK信号生成

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摘要

In this paper, a technique was numerically implemented to generate a frequency shift keying (FSK) radio-over-fiber (RoF) signal in optical domain. Due to the oscillator free generation of FSK signal, this scheme is highly stable with reduced complexity and extremely cost effective. The remote heterodyne detection method was used to detect the signal, where beating occurs to detect the FSK signal. With this scheme, it is able to efficiently generate FSK signal in the range of 60 and 75 GHz at 8 Gbit/s and effectively transmit it over 80 km link without degrading the signal shape and quality. The nonlinear threshold (NLT) point of the system has also been numerically analyzed to estimate the nonlinear tolerance of the system. Besides, the impact of transmission distance and polarization mode dispersion (PMD) was evaluated. Furthermore, the wavelength reuse for the uplink was implemented in the scheme by reusing the same wavelength for uplink that was used for signal generation at downlink. The whole process was performed in optical domain. Thus this scheme is very cost effective as the overall architecture of RoF system is simplified.
机译:在本文中,通过数值实现了一种在光域中生成频移键控(FSK)光纤无线电(RoF)信号的技术。由于没有振荡器产生的FSK信号,该方案非常稳定,具有降低的复杂度和极高的成本效益。远程外差检测方法用于检测信号,发生跳动以检测FSK信号。通过这种方案,它能够以8 Gbit / s的效率高效地生成60到75 GHz范围内的FSK信号,并在不降低信号形状和质量的情况下有效地在80 km链路上进行传输。还对系统的非线性阈值(NLT)点进行了数值分析,以估计系统的非线性容限。此外,评估了传输距离和偏振模色散(PMD)的影响。此外,在该方案中,通过为上行链路复用与在下行链路产生信号所使用的波长相同的波长,实现了上行链路的波长复用。整个过程在光学领域进行。因此,由于简化了RoF系统的整体架构,因此该方案非常具有成本效益。

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