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Parallel Polyphase Filtering for Pulse Shaping on High-Speed Optical Communication Systems

机译:高速光通信系统脉冲整形的并行多相滤波

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The requirement of higher data rates motivates the adoption of high-order modulations and pulse shaping in optical systems. This paper proposes an efficient architecture for FPGA-based parallel fractional sample rate conversion that has an optimum computational cost. The architecture supports non-integer oversampling factors, which allow increased flexibility when compared to schemes limited to adopting one or two samples per symbol, for example. The presented example is evaluated for a spectrally-efficient 400G optical supper-channel (three sub-channels with 16-QAM modulation) with different pulse shaping filter implementations using an FPGA working with a clock of 156.25 MHz. The results also illustrate the impact of the pulse shaping when a non-integer oversampling is adopted.
机译:更高数据速率的要求激励了采用光学系统中的高阶调制和脉冲整形。本文提出了一种有效的基于FPGA的平行分数采样率转换的架构,具有最佳的计算成本。该架构支持非整数过采样因子,其允许与限制为每个符号的一个或两个样本的方案相比增加灵活性。呈现的示例对于光谱有效的400g光学晚餐 - 信道(具有16-QAM调制的三个子通道),其使用FPGA与156.25MHz的时钟一起工作的不同脉冲整形滤波器实现。结果还说明了当采用非整数过采样时脉冲整形的影响。

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