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首页> 外文期刊>Journal of Lightwave Technology >W-Band Vector Millimeter-Wave Signal Generation Based on Phase Modulator With Photonic Frequency Quadrupling and Precoding
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W-Band Vector Millimeter-Wave Signal Generation Based on Phase Modulator With Photonic Frequency Quadrupling and Precoding

机译:基于光子四倍频和预编码的调相器的W波段矢量毫米波信号生成

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摘要

We experimentally demonstrate W-band vector millimeter-wave (mm-wave) signal generation and its air space transmission, from constant-modulus quadrature phase shift keying modulation to multimodulus 8-ary quadrature amplitude modulation/16-ary quadrature amplitude modulation (8QAM/16QAM) modulation, employing a photonic frequency-quadrupling scheme enabled by a single phase modulator and precoding technique. As far as we know, it is the first time to realize W-band 8QAM/16QAM vector mm-wave signal generation based on a single phase modulator with photonic frequency multiplication. We also investigate by numerical simulation and experiment the effect of the radio-frequency (RF) driving peak-to-peak voltage of the phase modulator on the performance of the generated vector mm-wave signal, and find that there exists an optimal RF driving peak-to-peak voltage for the best performance of the generated vector mm-wave signal, which agrees well with our theoretical analysis.
机译:我们从实验上展示了W波段矢量毫米波(mm-wave)信号的产生及其空域传输,从恒模正交相移键控调制到多模8进制正交幅度调制/ 16进制正交幅度调制(8QAM / 16QAM)调制,采用通过单相调制器和预编码技术实现的光子频率四倍方案。据我们所知,这是第一次基于具有光子倍频的单相调制器实现W波段8QAM / 16QAM矢量毫米波信号生成。我们还通过数值模拟和实验研究了相位调制器的射频(RF)驱动峰峰值电压对生成的矢量毫米波信号性能的影响,并发现存在最佳的RF驱动产生最佳矢量毫米波信号性能的峰峰值电压,这与我们的理论分析非常吻合。

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