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Generation of Spectrally Efficient Nyquist-WDM QPSK Signals Using Digital FIR or FDE Filters at Transmitters

机译:在发射机处使用数字FIR或FDE滤波器生成高效频谱的Nyquist-WDM QPSK信号

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摘要

Nyquist pulse shaping can be used to increase the spectral efficiency (SE) by narrowing the signal spectrum without introducing intersymbol interference in a wavelength-division-multiplexed (WDM) system. In this paper, we investigate the complexity and performance of pulse shaping at the transmitter side using digital finite-impulse-response (FIR) or frequency-domain-equalization (FDE) filters to increase the SE in a polarization-division-multiplexed quadrature-phase-shift-keyed WDM system. Simulation results show that FIR filters with 17 taps allow for a reduction in channel spacing to 1.1 times the symbol rate within a 1 dB penalty. The root-raised-cosine spectrum shape has better performances than the raised-cosine spectrum shape with that channel spacing. An FDE filter with a fast Fourier transform size of 64 and an overlap length of 8 points performs slightly better than a 17-tap FIR filter.
机译:奈奎斯特脉冲整形可用于通过使信号频谱变窄来增加频谱效率(SE),而不会在波分复用(WDM)系统中引入符号间干扰。在本文中,我们研究了使用数字有限冲激响应(FIR)或频域均衡(FDE)滤波器在发射器端进行脉冲整形的复杂性和性能,以增加极化分频正交正交电路中的SE。相移键控的WDM系统。仿真结果表明,具有17个抽头的FIR滤波器可将通道间距减小到符号率的1.1倍,而代价却是1 dB。具有该通道间隔的根升余弦频谱形状具有比升余弦频谱形状更好的性能。快速傅立叶变换大小为64,重叠长度为8点的FDE滤波器的性能比17抽头FIR滤波器稍好。

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