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Hybrid Multiplexing (OTDM/WDM) Technique for Fiber Optic Communication

机译:用于光纤通信的混合多路复用(OTDM / WDM)技术

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Today's world needs high data transmission and huge bandwidth systems through optical fiber communication networks. For achieving that, passive optical networks (PON) are much more in practice. In this work, we have presented a hybrid multiplexed system, containing 4 channel optical time domain multiplexing (OTDM) and 2 channel wavelength division multiplexing (WDM) schemes. To utilize the available optical bandwidth for multiplexed system, carrier-suppressed return to zero (CSRZ) modulation technique is used. To mitigate the dispersion effect in fiber, symmetrical dispersion compensation scheme is used in the proposed system. Erbium-doped fiber amplifier (EDFA) is used to compensate the linear loss. The system is simulated for data rate of 40 Gbps. A link distance of 1,150 km is achieved with the proposed system. The main purpose of hybrid multiplexing of OTDM and WDM is to get higher spectral efficiency and cost reduction. Due to the use of hybrid multiplexing, it is possible to design a 8 × 40 Gbps system with the help of two optical sources. The performance of the proposed system is analyzed in terms of bit error rate, received power, optical time domain, frequency domain signal and Q-factor. The system will be highly useful for next generation high-speed fiber optic communication applications.
机译:今天的世界通过光纤通信网络需要高数据传输和巨大的带宽系统。为了实现这一点,无源光网络(PON)在实践中得多。在这项工作中,我们介绍了混合多路复用系统,其中包含4通道光学时域复用(OTDM)和2个通道波分复用(WDM)方案。利用用于多路复用系统的可用光学带宽,使用载波抑制返回到零(CSRZ)调制技术。为了减轻光纤中的分散效果,所提出的系统中使用对称色散补偿方案。掺铒光纤放大器(EDFA)用于补偿线性损耗。系统被模拟以实现40 Gbps的数据速率。通过所提出的系统实现了1,150公里的链路距离。 OTDM和WDM的混合复用的主要目的是获得更高的光谱效率和降低成本。由于使用混合多路复用,可以在两个光源的帮助下设计8×40 Gbps系统。在误码率,接收功率,光学时域,频域信号和Q系数方面分析了所提出的系统的性能。该系统对下一代高速光纤通信应用非常有用。

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