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Optical fibre wavelength division multiplexing

机译:光纤波分复用

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摘要

An overview is given of wave-length division multiplexing (WDM) as a means of expanding communication capacity and implementing special data techniques in a fiber-optic system. This technology is implemented by adding optical sources of different wavelengths at optical transmitting locations, then mixing (multiplexing) the optical signals and coupling them into an optical fiber where they travel to another location. The optical wavelengths are then separated (demultiplexed) and detected by optical receivers. Fundamentally, a wide band of wavelengths between 0.7 and 1.6 mu m exists for WDM applications. Even wider bandwidths will be available with the foreseeable development of infrared fibers. Topics covered include current and future applications of WDM, the current availability of WDM semiconductor laser/transmitters, optical-fiber taps and couplers, wavelength multiplexing/demultiplexing methods, and the use of WDM in local area networks.
机译:将波长分割复用(WDM)的概述作为扩展通信容量和实现光纤系统中的特殊数据技术的手段。该技术是通过在光学发送位置添加不同波长的光源来实现的,然后混合(复用)光信号并将它们耦合到光纤中,在光纤中移动到另一个位置。然后将光波长分离(解复用)并由光接收器检测。从根本上,对于WDM应用,存在0.7和1.6μm之间的宽带波长。即使是更宽的带宽也可用于可预见的红外线的开发。涵盖的主题包括WDM的电流和未来应用,WDM半导体激光/发射器,光纤抽头和耦合器,波长多路复用/解复用方法以及WDM在局域网中的使用。

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