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Ultra High Transmission Capacity of Undersea Optical Fiber Cables for Upgrading UW-WDM Submarine Systems

机译:用于升级UW-WDM水下系统的海底光缆的超高传输容量

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This paper has proposed ultimate optical transmission of ultra multi transmission channels huge submarine cables has been investigated under different depth conditions. Conventional forward Raman amplification technique is considered taking into account the reduction of the four wave mixing (FWM). The double impact of both ambient temperature and pressure effects are also investigated. The transmission technique is studied namely Soliton propagation technique. As well as two multiplexing methods are considered in the design namely ultra wide wavelength division multiplexing (UW-WDM) and ultra-wide space division multiplexing (UW-SDM). Based on experimental data, both the deep ocean water temperature and pressure are tailored as functions of the water depth. The product of the transmitted bit rate and the repeater spacing is processed over wide ranges of the affecting parameters.Keywords Four Wave Mixing, Submarine Systems, Multiplexing Techniques, Soliton Propagation and Undersea Depths.
机译:本文提出了在不同深度条件下研究超多传输通道的极限光传输的巨大海底电缆。考虑了传统的前向拉曼放大技术,并考虑了四波混频(FWM)的降低。还研究了环境温度和压力影响的双重影响。研究了传输技术,即孤子传播技术。在设计中还考虑了两种复用方法,即超宽波分复用(UW-WDM)和超宽空分复用(UW-SDM)。根据实验数据,深海水温和压力均根据水深进行了调整。传输比特率和中继器间隔的乘积在广泛的影响参数范围内进行处理。关键字四波混频,海底系统,复用技术,孤子传播和海底深度。

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