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Optical Single-Sideband Modulation With Tunable Optical Carrier to Sideband Ratio in Radio Over Fiber Systems

机译:光纤无线电系统中具有可调载流子与边带比的光单边带调制

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摘要

We show that an optical modulator that consists of an integrated dual parallel Mach-Zehnder modulator (dMZM) can be used for obtaining not only optical single-side band modulation but also tunability of optical carrier to sideband ratio (OCSR) simultaneously. Such a modulator will be vital for optimizing the performance of radio over fiber links by improving modulation efficiency and receiver sensitivity and by removing fiber chromatic dispersion induced RF power fading. It is shown that a wide range of OCSR tunability can be obtained by altering bias voltage of dMZM, and optimum OCSR, to maximize the output RF power, depends on RF modulation index and extinction ratio of the integrated dMZM. Good agreement between theory, simulation, and experiment is obtained. For typical extinction ratio and low modulation index, it is found that an OCSR of 0 dB is optimum to maximize RF carrier power. However, for multiband orthogonal frequency-division multiplexing (MB-OFDM) ultra-wideband (UWB) radio, the best error vector magnitude (EVM) of -21.8 dB is obtained experimentally at an OCSR of ~5.4 dB due to avoidance of clipping induced nonlinear distortion.
机译:我们表明,由集成的双并行马赫曾德尔调制器(dMZM)组成的光调制器不仅可以用于获得光单边带调制,而且还可以同时获得光载波与边带比(OCSR)的可调性。通过提高调制效率和接收器灵敏度并消除光纤色散引起的射频功率衰减,这种调制器对于优化光纤链路上的无线电性能至关重要。结果表明,通过改变dMZM的偏置电压可以获得广泛的OCSR可调性,而最佳的OCSR(取决于最大的dMZM的RF调制指数和消光比)以最大化输出RF功率。理论,仿真和实验之间取得了良好的一致性。对于典型的消光比和低调制指数,发现0 dB的OCSR对于最大化RF载波功率是最佳的。但是,对于多频带正交频分复用(MB-OFDM)超宽带(UWB)无线电,由于避免了削波引起的,在约5.4 dB的OCSR上,实验获得的最佳误差矢量幅度(EVM)为-21.8 dB非线性失真。

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