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Application of super-DWDM technologies to terrestrial terabit transmission systems

机译:超级DWDM技术在地面太比特传输系统中的应用

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摘要

This paper describes application areas, elemental technologies, and the feasibility of terrestrial terabit wavelength division multiplexing (WDM) transmission systems based on super-dense wavelength division multiplexing (DWDM) technologies with a channel spacing of 12.5 GHz. Numerical simulation results quantitatively show that the merit of super-DWDM transmission is the elimination of the need for dispersion compensation over the several hundreds of kilometers of standard single-mode fiber (SMF). To support super-DWDM transmission, the prototype of a multiwavelength generator, which consists of just an intensity modulator and a phase modulator, is developed as a small-size WDM light source with high-wavelength stability. We use this prototype to conduct a 1.28-Tb/s (512 channels /spl times/ 2.5 Gb/s) transmission experiment with a channel spacing of 12.5 GHz over 320 km (80 km /spl times/ 4 span) of standard SMF without dispersion compensation. The potential and the feasibility of super-DWDM transmission with a channel spacing of 12.5 GHz for terrestrial systems is confirmed by the numerical simulation and the transmission experiment.
机译:本文介绍了基于超密集波分复用(DWDM)技术且信道间隔为12.5 GHz的地面太比特波分复用(WDM)传输系统的应用领域,基本技术和可行性。数值模拟结果定量表明,超级DWDM传输的优点是消除了数百公里的标准单模光纤(SMF)上的色散补偿需求。为了支持超级DWDM传输,仅由强度调制器和相位调制器组成的多波长发生器原型被开发为具有高波长稳定性的小型WDM光源。我们使用该原型进行了1.28-Tb / s(512通道/ spl次/2.5 Gb / s)传输实验,在320 km(80 km / spl次/ 4跨度)的标准SMF上,通道间隔为12.5 GHz色散补偿。数值模拟和传输实验证实了信道间隔为12.5 GHz的Super-DWDM在地面系统上的传输潜力和可行性。

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