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Quadrature amplitude modulation (QAM) using binary-driven coupling-modulated rings

机译:使用二进制驱动的耦合调制环的正交幅度调制(QAM)

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摘要

We propose and fully analyze a compact structure for DAC-free pure optical QAM modulation. The proposed structure is the first ring resonator-based DAC-free QAM modulator reported in the literature, to the best of our knowledge. The device consists of two segmented add-drop Mach Zehnder interferometer-assisted ring modulators (MZIARM) in an IQ configuration. The proposed architecture is investigated based on the parameters from SOI technology where various key design considerations are discussed. We have included the loss in the MZI arms in our analysis of phase and amplitude modulation using MZIARM for the first time and show that the imbalanced loss results in a phase error. The output level linearity is also studied for both QAM-16 and QAM-64 not only based on optimizing RF segment lengths but also by optimizing the number of segments. In QAM-16, linearity among levels is achievable with two segments while in QAM-64 an additional segment may be required. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们提出并全面分析了无DAC的纯光学QAM调制的紧凑结构。据我们所知,该结构是文献中报道的第一个基于环形谐振器的无DAC QAM调制器。该设备包括两个IQ配置的分插式Mach Zehnder干涉仪辅助环形调制器(MZIARM)。基于SOI技术的参数对提出的体系结构进行了研究,其中讨论了各种关键设计注意事项。我们在使用MZIARM进行的相位和幅度调制分析中首次将MZI臂中的损耗包括在内,并表明不平衡损耗会导致相位误差。 QAM-16和QAM-64的输出电平线性度不仅基于优化RF段长度,而且还基于优化段数来研究。在QAM-16中,两个段可实现级别之间的线性,而在QAM-64中,可能需要一个附加段。 (C)2016 Elsevier B.V.保留所有权利。

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