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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Phase-diversity homodyne detection of multilevel optical modulation with digital carrier phase estimation
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Phase-diversity homodyne detection of multilevel optical modulation with digital carrier phase estimation

机译:具有数字载波相位估计的多级光调制的相分集零差检测

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This paper describes a phase-diversity homodyne receiver that which can cope with multilevel modulation formats. The carrier phase drift is estimated with digital signal processing (DSP) on the homodyne-detected signal, entirely restoring the complex amplitude of the incoming signal. Our DSP-based phase-estimation scheme consists of a simple and demultiplexable architecture that allows the system to reach significantly higher performance than conventional optical delay detection. Since the whole optical signal information is preserved with our receiver, various kinds of postprocessing of the received signal become possible. For example, we can demultiplex wavelength-division/optical time-division multiplexed channels and compensate for group velocity dispersion of fibers as well as the nonlinear phase noise in the electrical domain. We also experimentally evaluate the performance of our receiver. Our offline bit-error rate experiments show the feasibility of transmitting polarization-multiplexed 40-Gb/s quadrature phase-shift keying signals over 200 km with channel spacing of 16 GHz, leading to spectral efficiency of 2.5 b/s/Hz.
机译:本文介绍了一种相位分集零差接收机,它可以应对多级调制格式。利用数字信号处理(DSP)对零差检测到的信号估计载波相位漂移,从而完全恢复输入信号的复振幅。我们基于DSP的相位估计方案包含一个简单且可解复用的体系结构,使该系统能够比传统的光学延迟检测显着提高性能。由于整个光信号信息都由我们的接收机保存,因此对接收信号进行各种后处理成为可能。例如,我们可以对波分/光时分多路复用信道进行解复用,并补偿光纤的群速度色散以及电域中的非线性相位噪声。我们还通过实验评估了接收器的性能。我们的离线误码率实验表明,在200 km内以16 GHz的信道间隔传输极化复用的40 Gb / s正交相移键控信号是可行的,从而使频谱效率达到2.5 b / s / Hz。

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