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A 10 Gbit/s 160Gchip/s OCDMA coding:decoding system based on superstructured fiber gratings

机译:一种10 Gbit / s 160Gchip / s OCDma编码:基于超结构光纤光栅的解码系统

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摘要

The area of Optical Code Division Multiple Access (OCDMA) systems has received steadily growing interest in recent years. OCDMA offers a number of attractive features for future local area networks including higher connectivity, asynchronous multiple-access and more flexible bandwidth management. Much of the increased activity in this area has resulted from improvements in Fiber Bragg Grating (FBG) fabrication technology driven mainly by the stringent requirements of DWDM. It is now possible to design and reliably fabricate superstructured FBGs with truly complex amplitude and phase responses, opening up the possibility of using FBG components to perform fundamental OCDMA functions such as the coding and decoding of chip patterns described herein. Superstructured gratings offer advantages in terms of compactness, scalability, integrability, cost and ease of manufacture relative to competing technological approaches. These alternative approaches include the use of: arrayed waveguide gratings, fiber delay line arrays, arrays of discrete FBGs, and bulk-grating based systems incorporating some form of spatial light modulator.
机译:近年来,光码分多址(OCDMA)系统领域受到了越来越多的关注。 OCDMA为未来的局域网提供了许多吸引人的功能,包括更高的连接性,异步多址访问和更灵活的带宽管理。该领域活动的增加大部分归因于光纤布拉格光栅(FBG)制造技术的改进,这主要是由DWDM的严格要求驱动的。现在可以设计和可靠地制造具有真正复杂的幅度和相位响应的超结构化FBG,从而开辟了使用FBG组件执行基本OCDMA功能(如本文所述芯片图案的编码和解码)的可能性。与竞争技术方法相比,超结构化光栅在紧凑性,可扩展性,可集成性,成本和易于制造方面具有优势。这些替代方法包括使用:阵列波导光栅,光纤延迟线阵列,离散FBG阵列以及结合了某种形式的空间光调制器的基于体栅的系统。

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