Design and development of a mux/demux element for WDM over POF

M. Haupt, U. Fischer
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引用次数: 2

Abstract

POFs (polymer optical fibers) replace traditional communication media such as copper and glass step by step within short distance communication systems, mostly because of their cost-effectiveness and easy handling. POFs are used in various fields of optical communication, e.g. the automotive sector or in-house communication. The current "state of the art" are single mode communication systems. These systems use only one wavelength for communication, which limits the bandwidth. For future scenarios, this traditional technology is the bottleneck of bandwidth, e.g. for HDTV with IP-TV. One solution to surpass this limitation is to use more than one wavelength over one single fiber, a technique known as WDM (wavelength division multiplexing). This multiplexing technology requires two more technical key- elements: a multiplexer, which combines the multi- wavelengths signals into one fiber and a demultiplexer at the end of the network to separate the colored signals. This paper will show computer simulation of the design of several demux/mux-element patterns. The main idea is to split and combine the different wavelengths by means of a grating on an aspheric mirror. The following realization of this key element will be done with injection molding. This technology offers easy and very economical processing. These advantages make this technology first choice for optical components in the low-cost array.
基于点对点的波分复用/失复用元件的设计与开发
聚合物光纤在短距离通信系统中逐步取代了传统的通信介质,如铜和玻璃,主要是因为它们具有成本效益和易于操作。pfs用于光通信的各个领域,例如汽车行业或内部通信。目前“最先进的技术”是单模通信系统。这些系统只使用一个波长进行通信,这限制了带宽。在未来的场景中,这种传统技术是带宽的瓶颈,例如对于带有IP-TV的HDTV。克服这一限制的一个解决方案是在一根光纤上使用多个波长,这种技术被称为WDM(波分复用)。这种多路复用技术还需要两个关键技术要素:一个多路复用器,它将多波长信号合并到一根光纤中,另一个在网络末端的解路复用器将彩色信号分离。本文将展示几种多模/多模元件图案设计的计算机模拟。其主要思想是利用非球面反射镜上的光栅将不同波长的光波进行分离和组合。这个关键元件的后续实现将通过注射成型完成。这项技术提供了简单和非常经济的处理。这些优点使该技术成为低成本阵列光学元件的首选。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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