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首页> 外文期刊>Indian Journal of Science and Technology >Analytical Study of DWDM Optical Long Haul Network with Symmetrical Dispersion Compensation
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Analytical Study of DWDM Optical Long Haul Network with Symmetrical Dispersion Compensation

机译:具有对称色散补偿的DWDM光长距离网络的分析研究

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Objective: To design 40 Gbps ultra-dense wavelength division multiplexed (DWDM) optical network for 32 and 64 channels. Methods: Proposed DWDM architecture supports three different advance modulation schemes with symmetrical dispersion compensation unit. Performance of proposed work has been investigated using parameters bit error rate (BER) and quality factor. For efficient analysis, we employ variation in channel spacing, transmission length of fiber and input laser power, which is resulted into some significant observations. Findings: Carrier Suppressed Return to Zero (CSRZ) scheme exhibits a good quality factor with maximum achievable distance up to 4250 km due to highest tolerance to nonlinear effects. Modified Duobinary Return to Zero (MDRZ) modulation scheme also provides a good quality factor with laser power variation due to high receiver sensitivity, but with limited reach upto 2750 km. While Duobinary Return to Zero (DRZ) scheme provides moderate transmission coverage up to 3750 km in comparison to CSRZ and MDRZ, with a lesser quality factor due to effect of Inter Symbol Interference (ISI). We observe that an increase in number of simultaneous users through the channels results into performance degradation. Application: This work delivers very huge data rate and good spectral efficiency to sustain the current high traffic growth.
机译:目的:设计用于32和64通道的40 Gbps超密集波分复用(DWDM)光网络。方法:提出的DWDM体系结构支持三种具有对称色散补偿单元的高级调制方案。已使用参数误码率(BER)和品质因数研究了建议工作的性能。为了进行有效的分析,我们采用了通道间隔,光纤传输长度和输入激光功率的变化,这引起了一些重要的发现。研究结果:载波抑制归零(CSRZ)方案具有良好的品质因数,由于对非线性效应的最高容忍度,最大可实现距离达4250 km。改进的双二进制归零(MDRZ)调制方案还由于接收器灵敏度高而具有随激光功率变化的良好品质因数,但在2750 km的范围内受到限制。尽管双二进制归零(DRZ)方案与CSRZ和MDRZ相比提供了3750 km的中等传输覆盖范围,但由于符号间干扰(ISI)的影响,质量因数较小。我们观察到通过通道同时使用的用户数量增加导致性能下降。应用:这项工作可提供非常大的数据速率和良好的频谱效率,以维持当前的高流量增长。

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