Modeling and computational analysis of the combined impact of optical Kerr nonlinearities on the performance of DWDM long-haul communication systems

被引:0
作者
Abbas Yıldırım
Sait Eser Karlık
机构
[1] Bursa Uludağ University,Graduate School of Natural and Applied Science, PhD. Program of Electronics Engineering
[2] Bursa Uludağ University,Faculty of Engineering, Department of Electrical and Electronics Engineering
来源
Optical and Quantum Electronics | 2023年 / 55卷
关键词
SPM; XPM; FWM; DWDM; Long-haul communication systems; Optical fiber;
D O I
暂无
中图分类号
学科分类号
摘要
Nonlinear impacts arising from Kerr effect cause crucial limitations in the performance of optical communication systems. The combined impact of SPM, XPM and FWM in WDM-based communication systems has rarely been focused on with experimental or numerical methods because of complicated nature of optical nonlinear phenomena, modeling complexity, limitations on testing equipment and difficulties in performing measurements over long distances. Furthermore, in limited number of papers concentrating on the combined impact of SPM, XPM and FWM in WDM-based systems, total impact has generally been determined by summation of results obtained from individual impacts of SPM, XPM and FWM. Thus, the interplay among SPM, XPM and FWM has often been neglected. In this paper, the combined impact of SPM, XPM and FWM in DWDM long-haul communication systems has been modeled and computationally analyzed. Variations of signal-to-crosstalk ratio (SXR) with input powers of channels and channel spacings under the combined impact of SPM, XPM and FWM and the single impact of FWM have been observed and compared. Comparison of research results with results of former studies has also been presented. Research results show that combined impact of SPM, XPM and FWM is significant below 100 GHz channel spacings for input powers of 3 mW and 5 mW, below 50 GHz channel spacings for 1 mW input powers and below 30 GHz channel spacings for 0.5 mW input powers. For input powers of 0.1 mW, instead of the combined impact of SPM, XPM and FWM, single impact of FWM can be considered.
引用
收藏
相关论文
共 124 条
  • [11] Das NR(2018)The combined impact of SRS and FWM phenomena on the downlink channel performance of DWDM-GPON systems Uludağ Univ J Fac Eng 23 67-519
  • [12] Sarkar S(2021)An optimal framework for WDM systems using analytical characterization of refractive index-related nonlinear impairments Electron 10 221-2171
  • [13] Filho USP(2016)Analysis of the four-wave mixing impact on the most heavily affected channels of dense and ultra-dense wavelength division multiplexing systems using non-zero dispersion shifted fibers Optik 127 7469-654
  • [14] Ribeiro MRN(2019)Influence of nonlinear effects on 6.4 Tb/s dual polarization quadrature phase shift keying modulated dense wavelength division multiplexed system Int. J. Commun. Syst. 32 e4021-20698
  • [15] Maioli CP(2009)Theoretical investigations to minimize bit error rate by optimizing system parameters in optical DWDM transmission systems at different data rates J. Nonlinear Opt. Phys. Mater. 18 501-397
  • [16] Freitas M(2010)Impact of fiber nonlinearities in optical DWDM transmission systems at different data rates Optik 121 2166-292
  • [17] Fonseca IE(1997)Analysis of cross-phase modulation (XPM) effect on WDM transmission performance Electron. Lett. 33 653-11
  • [18] Garg D(2023)Combined impact of SRS, FWM and ASE noise in UDWDM/DWDM long-haul communication systems using EDFAs Opt. Laser Technol. 157 108695-4218
  • [19] Nain A(2008)Inter-channel nonlinear crosstalk in analog phase-modulated wavelength-division-multiplexed systems Opt. Express 16 20687-67
  • [20] Harboe PB(2003)Efficient Numerical simulation of multichannel WDM transmission systems limited by XPM IEEE Photonics Technol. Lett. 15 395-664