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首页> 外文期刊>Journal of Lightwave Technology >Beyond 200G Direct Detection Transmission With Nyquist Asymmetric Twin-SSB Signal at C-Band
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Beyond 200G Direct Detection Transmission With Nyquist Asymmetric Twin-SSB Signal at C-Band

机译:超越200G直接检测传输的C波段Nyquist不对称双SSB信号

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For short reach and metro applications, single sideband (SSB) is a promising scheme due to its high spectral efficiency and tolerance to chromatic dispersion. In this study, we propose a novel asymmetric twin-SSB scheme based on Nyquist pulse shaping. Without joint equalization, the two sidebands can be separately detected with a small guard band. We experimentally demonstrate 224-Gb/s 16-ary quadrature amplitude modulation (16-QAM) asymmetric twin-SSB transmission with direct detection. After 240-km standard single mode fiber (SSMF) transmission, the bit error rates (BERs) of the right-sideband (RSB) and the left-sideband (LSB) are 3.2 × 10−3 and 2.8 × 10−3, respectively, which are below the 7% hard-decision forward error correction (HD-FEC) threshold of 3.8 × 10−3. The net bitrate is 203.7 Gb/s with consideration of both frame redundancy and HD-FEC overhead. To our best knowledge, we report the longest transmission distance for 200G single wavelength and single polarization direct detection systems. The advantages of the asymmetric twin-SSB scheme over the symmetric scheme are discussed through simulating the crosstalk resistance of both two schemes. We also demonstrate 300-Gb/s 32-QAM transmission over 80-km SSMF. The BERs of RSB and LSB are 1.50 × 10−2 and 1.61 × 10−2, respectively, which are below the 15% soft-decision forward error correction (SD-FEC) threshold of 1.8 × 10−2. The net bitrate is 254.3 Gb/s with consideration of both frame redundancy and SD-FEC overhead. To our best knowledge, it is the maximum bitrate ever reported for C-band 80-km single wavelength and single polarization direct detection transmission. The proposed scheme provides a useful and low-cost solution for high speed datacenter interconnection and metro-scale transmission.
机译:对于短距离和城域应用,单边带(SSB)由于其高频谱效率和对色散的容忍性而成为有前途的方案。在这项研究中,我们提出了一种基于奈奎斯特脉冲整形的新型非对称双SSB方案。如果不进行联合均衡,则可以使用较小的保护带分别检测两个边带。我们通过实验证明了具有直接检测功能的224 Gb / s 16进制正交调幅(16-QAM)非对称双SSB传输。经过240 km标准单模光纤(SSMF)传输后,右侧带(RSB)和左侧带(LSB)的误码率(BERs)分别为3.2×10-3和2.8×10-3 ,该值低于7%硬决策前向纠错(HD-FEC)阈值3.8×10-3。考虑帧冗余和HD-FEC开销,净比特率为203.7 Gb / s。据我们所知,我们报告了200G单波长和单偏振直接检测系统的最长传输距离。通过模拟两种方案的抗串扰性,讨论了非对称双SSB方案相对于对称方案的优势。我们还演示了在80公里SSMF上的300 Gb / s 32-QAM传输。 RSB和LSB的BER分别为1.50×10-2和1.61×10-2,低于15%软判定前向纠错(SD-FEC)阈值1.8×10-2。考虑到帧冗余和SD-FEC开销,净比特率为254.3 Gb / s。据我们所知,这是有史以来报告的C波段80公里单波长和单偏振直接检测传输的最大比特率。所提出的方案为高速数据中心互连和城域规模传输提供了一种有用且低成本的解决方案。

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