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Non-linear effects of high rate soliton transmission on DWDM optical fiber communication system

机译:高速孤子传输对DWDM光纤通信系统的非线性效应

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The bit error rate (BER) decreasing of soliton transmission in dense wavelength division multiplexing (DWDM) system because of non-linear effects is investigated. Non-linear effects in DWDM are brought on by the Quadratic Electro-Optic effects (Kerr Effects) and inelastic scattering. The Kerr effects included self-phase modulation, four wave mixing, and cross phase modulation. Kerr effects can cause problems in the limited number of channels and bandwidth. In this paper, we analyzed the impact of Kerr-effect on 10 Gbps soliton transmission DWDM systems which found that the value of refractive index of non-linear (n2) influences on reducing the number of input channel. The results show that soliton can increase quality of performance with Q factor more than 6. Several research with same bitrate using a length of 100 km, this paper analyzed longer distances have doubled, which is 200 km. Transmit power has a lower power value of about 35%, it is very important for issue of energy savings. In addition, the number of channels increasing up to 80 channels.
机译:研究了偏差率(BER)在致密波分复用(DWDM)系统中的孤子传输减少,因为由于非线性效应而进行了致密波分复用(DWDM)系统。 DWDM中的非线性效应由二次电光效应(kerr效应)和非弹性散射带来。 KERR效应包括自相调制,四波混合和交叉相位调制。 KERR效应可能导致有限数量的通道和带宽导致问题。在本文中,我们分析了KERR效应对10 Gbps孤子传输DWDM系统的影响,发现非线性(N2)的折射率值对减少输入通道数的影响。结果表明,孤子可以将性能的质量提高,Q因子超过6.几次使用长度100公里的比特率的研究,本文分析了较长的距离加倍,即200公里。传输功率具有较低功率值约为35%,对节能问题非常重要。另外,频道的数量增加到80个通道。

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