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首页> 外文期刊>Photonics Technology Letters, IEEE >W-Band 8QAM Vector Signal Generation by MZM-Based Photonic Frequency Octupling
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W-Band 8QAM Vector Signal Generation by MZM-Based Photonic Frequency Octupling

机译:基于MZM的光子频率八倍频产生W波段8QAM矢量信号

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摘要

We propose a novel scheme for photonic multiamplitude quadrature-amplitude-modulation (QAM) vector signal generation at microwave/millimeter-wave bands enabled by Mach-Zehnder modulator (MZM)-based adaptive photonic frequency multiplication. In order to attain an electrical millimeter-wave vector signal displaying multiamplitude QAM modulation, such as 8QAM, after square-law photodiode detection, the driving radio-frequency (RF) signal, carrying multiamplitude QAM transmitter data, should be both amplitude- and phase-precoded before used to drive the MZM. We experimentally demonstrate 8QAM vector signal generation at W-band adopting photonic frequency octupling (x8) enabled by our proposed scheme. The MZM is driven by a 12-GHz precoded RF signal carrying 1-GBaud 8QAM transmitter data. The generated 1-GBaud 8QAM vector signal at W-band is air transmitted over 2-m distance. To the best of our knowledge, it is the first time to realize the generation and reception of multiamplitude QAM vector signal by one external modulator at W-band.
机译:我们提出了一种新的方案,用于通过基于Mach-Zehnder调制器(MZM)的自适应光子倍频实现的微波/毫米波波段的光子多振幅正交调幅(QAM)矢量信号生成。为了在平方律光电二极管检测之后获得显示多振幅QAM调制(例如8QAM)的电毫米波矢量信号,携带多振幅QAM发送器数据的驱动射频(RF)信号应同时具有振幅和相位-在用于驱动MZM之前进行预编码。我们通过拟议方案启用的光子频率八倍(x8),通过实验证明了W波段的8​​QAM矢量信号生成。 MZM由携带1 GBaud 8QAM发射机数据的12 GHz预编码RF信号驱动。在W波段生成的1-GBaud 8QAM矢量信号通过2 m的距离进行空中传输。据我们所知,这是第一次通过一个外部调制器在W波段实现多幅度QAM矢量信号的生成和接收。

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