Design and investigation of filterless sixtuple RoF upconversion system with improved sideband to carrier suppression ratio using MZM extinction ratio variance

Ajay Kumar, Shelly Singla, Deepak Kedia
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Abstract

In this work, millimeter wave generation of sixtuple frequency scheme using dual parallel Mach–Zehnder modulator configuration has been investigated. The proposed scheme is mathematically analyzed and its performance is evaluated using software optisystem v.18. The vital parameters of both Mach–Zehnder modulator and phase of radio frequency local oscillator are properly adjusted for upconversion of 10 GHz radio frequency drive signal into 60 GHz mm wave. The impact of Mach–Zehnder modulator extinction ratio on radio frequency sideband suppression ratio, optical sideband suppression ratio and third sideband to carrier suppression ratio, is evaluated. An improved 63 dB third sideband to carrier suppression ratio is achieved at increased extinction ratio of Mach–Zehnder modulator. Impact of bias point drift and electrical phase shift on sideband suppression ratios are evaluated. Further, millimeter wave signal of 6–60 GHz tunability is realized by applying radio frequency local oscillator signal from 1 to 10 GHz.
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利用 MZM 消光比方差设计和研究可提高边带与载波抑制比的无滤波器六倍 RoF 上转换系统
在这项工作中,研究了使用双并行马赫-泽恩德调制器配置产生六倍频毫米波的方案。使用 optisystem v.18 软件对拟议方案进行了数学分析和性能评估。马赫-泽恩德调制器的重要参数和射频本地振荡器的相位都进行了适当调整,以便将 10 GHz 射频驱动信号上变频为 60 GHz 毫米波。评估了马赫-泽恩德调制器消光比对射频边带抑制比、光边带抑制比和第三边带与载波抑制比的影响。提高马赫-泽恩德调制器的消光比后,第三边带与载波的抑制比提高了 63 dB。评估了偏置点漂移和电相移对边带抑制比的影响。此外,通过应用 1 至 10 GHz 的射频本地振荡器信号,实现了 6-60 GHz 的毫米波信号可调谐性。
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