Zhang Yequn, Arabaci Murat, Djordjevic Ivan B
Department of Electrical and Computer Engineering, University of Arizona, 1230 E. Speedway Blvd., Tucson, Arizona 85721, USA.
Opt Express. 2012 Apr 9;20(8):9296-301. doi: 10.1364/OE.20.009296.
Leveraging the advanced coherent optical communication technologies, this paper explores the feasibility of using four-dimensional (4D) nonbinary LDPC-coded modulation (4D-NB-LDPC-CM) schemes for long-haul transmission in future optical transport networks. In contrast to our previous works on 4D-NB-LDPC-CM which considered amplified spontaneous emission (ASE) noise as the dominant impairment, this paper undertakes transmission in a more realistic optical fiber transmission environment, taking into account impairments due to dispersion effects, nonlinear phase noise, Kerr nonlinearities, and stimulated Raman scattering in addition to ASE noise. We first reveal the advantages of using 4D modulation formats in LDPC-coded modulation instead of conventional two-dimensional (2D) modulation formats used with polarization-division multiplexing (PDM). Then we demonstrate that 4D LDPC-coded modulation schemes with nonbinary LDPC component codes significantly outperform not only their conventional PDM-2D counterparts but also the corresponding 4D bit-interleaved LDPC-coded modulation (4D-BI-LDPC-CM) schemes, which employ binary LDPC codes as component codes. We also show that the transmission reach improvement offered by the 4D-NB-LDPC-CM over 4D-BI-LDPC-CM increases as the underlying constellation size and hence the spectral efficiency of transmission increases. Our results suggest that 4D-NB-LDPC-CM can be an excellent candidate for long-haul transmission in next-generation optical networks.
利用先进的相干光通信技术,本文探讨了在未来光传输网络中使用四维(4D)非二进制低密度奇偶校验码编码调制(4D-NB-LDPC-CM)方案进行长距离传输的可行性。与我们之前关于4D-NB-LDPC-CM的工作不同,之前的工作将放大自发辐射(ASE)噪声视为主要损伤,本文在更现实的光纤传输环境中进行传输,除了ASE噪声外,还考虑了色散效应、非线性相位噪声、克尔非线性和受激拉曼散射引起的损伤。我们首先揭示了在低密度奇偶校验码编码调制中使用4D调制格式相对于与偏振分复用(PDM)一起使用的传统二维(2D)调制格式的优势。然后我们证明,具有非二进制低密度奇偶校验分量码的4D低密度奇偶校验码编码调制方案不仅显著优于其传统的PDM-2D对应方案,而且优于采用二进制低密度奇偶校验码作为分量码的相应4D比特交织低密度奇偶校验码编码调制(4D-BI-LDPC-CM)方案。我们还表明,4D-NB-LDPC-CM相对于4D-BI-LDPC-CM提供的传输距离改善随着底层星座大小以及因此传输的频谱效率的增加而增加。我们的结果表明,4D-NB-LDPC-CM可以成为下一代光网络中长距离传输的优秀候选方案。