首页> 外文期刊>IEEE Photonics Technology Letters >Rebuttal to “Photonic Microwave Generation With Frequency Octupling Based on a DP-QPSK Modulator”
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Rebuttal to “Photonic Microwave Generation With Frequency Octupling Based on a DP-QPSK Modulator”

机译:驳斥“基于DP-QPSK调制器的具有频率八倍的光子微波产生”

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摘要

In the title paper, Gao et al. have experimentally demonstrated a scheme for filter-less photonic millimetre-wave (mm-wave) generation using a dual polarization quadrature phase shift keying modulator (DP-QPSK). For frequency octo-tupling generation, the X-QPSK modulator is biased such that all the harmonics are suppressed except those that are order of , where is an integer and combined with the output of the non-modulated Y-QPSK modulator using a polarization beam combiner. Precise setting of the polarizer angle suppresses the carrier, leaving the ±4th sidebands as the strongest harmonics, which is the innovative part of their design. However, a demerit of the design is that, following any change in modulation index, a precise readjustment of the polarizer angle is required in order to suppress the unwanted harmonics (e.g. carrier) without undue suppression of the wanted harmonics. The goal of this comment is to show that, for an appropriate modulation of the Y-QPSK modulator with the design presented by Gao for a fixed polarizer angle, all the harmonics can be suppressed except those that are order of , where is an odd integer. Hence, a filter-less frequency octo-tupling can be generated without restricting its operation by the careful adjustment of the RF drive signal; rather the circuit can function for a broad range of modulation index ( . Moreover, the unwanted harmonics suppressed by design mandate 6.66 dB optical and 11 dB electrical advantages over the design presented by Gao and the precise setting of the polarizer angle can be a- oided.
机译:在标题文件中,Gao等人。已通过实验证明了一种使用双偏振正交相移键控调制器(DP-QPSK)的无滤波器光子毫米波(mm-wave)生成方案。为了产生频率十进制耦合,对X-QPSK调制器施加偏置,以便抑制所有谐波,除了,,,,,均是整数的谐波,并使用偏振光束将其与未调制的Y-QPSK调制器的输出合并合路器。偏振器角度的精确设置抑制了载波,使±4边带成为最强的谐波,这是其设计的创新部分。然而,该设计的缺点在于,在调制指数的任何变化之后,都需要对偏振器角度进行精确的重新调整,以便抑制不想要的谐波(例如载波)而又不过度抑制想要的谐波。此评论的目的是表明,对于由Gao提出的设计,对于固定偏振器角度而言,对于Y-QPSK调制器进行适当的调制,除的阶次为之外的所有谐波都可以被抑制,其中奇数整数。因此,可以通过仔细调整射频驱动信号来产生无滤波器的频率八极管,而不会限制其工作。电路可以在很宽的调制指数范围内工作。此外,与Gao提出的设计相比,设计要求抑制了6.66 dB的光学谐波和11 dB的电气优势,可以消除不需要的谐波,并且可以精确设置偏振片角度。

著录项

  • 来源
    《IEEE Photonics Technology Letters》 |2016年第16期|1794-1794|共1页
  • 作者

    Mehedi Hasan; Trevor J. Hall;

  • 作者单位

    Photonic Technology Laboratory, University of Ottawa, Ottawa, ON, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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