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Field Transmission of 100 G and Beyond: Multiple Baud Rates and Mixed Line Rates Using Nyquist-WDM Technology

机译:100 G及更高的现场传输:使用Nyquist-WDM技术的多种波特率和混合线速

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Successful joint experiments with Deutsche Telecom (DT) on long-haul transmission of 100 G and beyond are demonstrated over standard single-mode fiber (SSMF) and inline erbium-doped fiber amplifier-only amplification. The transmission link consists of eight nodes and 950-km installed SSMF in DT's optical infrastructure with the addition of lab SSMF for extended optical reach. The first field transmission of 8$,times,$216.8-Gb/s Nyquist-WDM signals is reported over 1750-km distance with 21.6-dB average loss per span. Each channel modulated by a 54.2-Gbaud PDM-CSRZ-QPSK signal is on 50-GHz grid, achieving a net spectral efficiency (SE) of 4 bit/s/Hz. We also demonstrate mixed data-rate transmission coexisting with 1 T, 400 G, and 100 G channels. The 400 G uses four independent subcarriers modulated by 28-Gbaud PDM-QPSK signals, yielding the net SE of 4 bit/s/Hz while 13 optically generated subcarriers from single optical source are employed in 1 T channel with 25-Gbaud PDM-QPSK modulation. The 100 G signal uses real-time coherent PDM-QPSK transponder with 15% overhead of soft-decision forward-error correction. The digital postfilter and 1-bit maximum likelihood sequence estimation are introduced at the receiver DSP to suppress noise, linear crosstalk, and filtering effects. Our results show the future 400 G and 1 T channels utilizing the Nyquist wavelength division multiplexing technique can transmit long-haul distance with higher SE using the same QPSK format.
机译:通过标准单模光纤(SSMF)和仅掺line光纤放大器的在线放大,证明了与Deutsche Telecom(DT)进行的100 G及更高距离的远距离传输的成功联合实验。传输链路由DT的光纤基础设施中的八个节点和已安装950公里的SSMF组成,另外还增加了实验室SSMF以扩展光纤的覆盖范围。据报道,在1750公里的距离上首次传输8倍216.8 Gb / s Nyquist-WDM信号,每段平均损耗为21.6 dB。由54.2 Gbaud PDM-CSRZ-QPSK信号调制的每个通道都位于50 GHz网格上,从而实现了4 bit / s / Hz的净频谱效率(SE)。我们还演示了与1 T,400 G和100 G通道共存的混合数据速率传输。 400 G使用由28 Gbaud PDM-QPSK信号调制的四个独立子载波,产生的净SE为4位/秒/赫兹,而来自单个光源的13个光生成子载波在25 Gbaud PDM-QPSK的1 T通道中使用调制。 100 G信号使用实时相干PDM-QPSK应答器,并具有15%的软判决前向纠错开销。在接收机DSP中引入了数字后滤波器和1位最大似然序列估计,以抑制噪声,线性串扰和滤波效应。我们的结果表明,使用奈奎斯特波分复用技术的未来400 G和1 T信道可以使用相同的QPSK格式以更高的SE传输长途距离。

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