用于小世界通信的经济型自制聚合物光纤分路器的实现

Mohd Syuhaimi Ab-Rahman, K. Jumari, H. Guna, M. Harun
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引用次数: 3

摘要

由于通信网络中典型的数据流模式表现为大量的聚类和少量需要快速完成的长距离通信,因此小世界网络是通信网络中很有前途的候选者。聚合物光纤(POF)可以并正在广泛应用于各个领域。两个主要领域是汽车和家庭网络。因此,POF在这里可以被看作是小世界通信特别是家庭网络应用的最佳解决方案之一。本文采用性能技术制备了1 × 3熔融锥扭聚合物光纤分光器,并提出了在小世界通信中的应用。市场上有几种系统可以将一个耦合信号分离到不同的信道中传输,但它们都有一定的缺点。但所有这些解决方案都有一个主要缺点;对于上面提到的大多数应用程序来说,它们都太昂贵了。因此,本研究的目标是开发一种经济的分频器,用于POFs上的小世界通信。报道了该分离器的特性。将波长为650nm的红色LED注入分路器进行表征测试,分析分路器的功率效率水平。最终分析表明,分路器输出效率可达30%。设备性能可以通过经验和实践逐步提高。这里的要点是,制作工艺简单,容易,适合家庭使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Realization of an Economical Self-Fabricated Polymer Optical Fiber Splitters for Small World Communication
Small world networks are promising candidates for communication networks since typical data-flow patterns in communication networks show a large amount of clustering with a small number of long-distance communications that need to be completed quickly. Polymer Optical Fiber (POF) can be and are being used in various fields of application. Two of the main fields are the automotive and the home networking. So, POF here can be seen as one of the best solutions for small world communication especially in home networking application. In this paper, optical 1x3 fused-taper-twisted polymer optical fiber (POF) splitters has been fabricated by a perform technique and proposed to be applied on small world communication application. There several systems available on the market, which can be split a coupled signal to be transmitted into some different channels, which are all afflicted with certain disadvantages. But all these solutions have one main disadvantage; they are all too expensive for most of the applications mentioned above. So the goal of this study is to develop an economical splitter for small world communication over POFs. Characterization of the splitter was reported. Red LED with a 650 nm wavelength has been injected into the splitter for the purpose of characterization testing to analyze the level of power efficiency of the splitter. Final analysis shows that efficiency of splitter output able to reach up to 30%. The device performance can be improved gradually through experience and practice. Main point here is, the fabrication process is simple, easy and suitable to be used for household.
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