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Time-frequency analysis of optical communication signals and effects of second and third order dispersion

机译:光通信信号的时频分析及二阶和三阶色散的影响

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Summary form only given. Channel data rates in optical communication systems are continually increasing with 40 and 80 Gbps rate systems under development today and bit-rates up to 640 Gbps demonstrated in laboratory experiments. Dispersive effects due to propagation through fiber and wavelength-division-multiplexing (WDM) channel filters distort optical signals, requiring dispersion compensation. In addition, systems with high data rates or WDM channels ranging over wide wavelength range also require dispersion slope compensation. We describe time-frequency analysis and measurements of amplitude- and phase-modulated optical signals. Such spectrogram representation of communication signals clearly shows spectral evolution of the signals, the effects of dispersion and dispersion slope on the signals, and can help in the design of spectrally-efficient, single or multichannel high-speed optical communication signals and systems.
机译:仅提供摘要表格。随着当今正在开发的40和80 Gbps速率系统,光通信系统中的信道数据速率不断提高,并且在实验室实验中证明了高达640 Gbps的比特率。由于通过光纤传播的色散效应和波分复用(WDM)通道滤波器会导致光信号失真,因此需要色散补偿。此外,具有高数据速率或宽波长范围内WDM信道的系统也需要色散斜率补偿。我们描述了时频分析以及幅度和相位调制光信号的测量。通信信号的这种频谱图表示法清楚地显示了信号的频谱演变,色散和色散斜率对信号的影响,并且可以帮助设计具有光谱效率的单通道或多通道高速光通信信号和系统。

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