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Multi-dimensional Photonic Processing, A Discrete-Domain Approach: Part Ⅱ - Decomposition Techniques and Implementation Using Fiber Optic Delay lines

机译:多维光子处理,一种离散域方法:第二部分-分解技术和使用光纤延迟线的实现

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摘要

Ultra high bandwidth properties of fiber-optic signal processing systems could provide the necessary processing power for computationally demanding two-dimensional signal processing applications. The techniques of fiber-optic signal processing so far have not been applied to the area of two-dimensional signal processing. Further the matured fields of integrated optics and integrated photonics as well as recent developments of nano-photonics allow innovative structures for processing of lightwaves in photonic domain. This paper as Part Ⅱ of three part series on multi-dimension photonic signal processing, has sought to integrate the fields of discrete signal processing and fiberoptic signal processing, integrated photonics and/or possibly nano-photonics to establish a methodology based on which physical systems can be implemented. Several photonic signal processing (PSP) architectures are proposed to enable efficient coherent lightwave signal processing. Although the structures are originally developed for 2-D processing, they are also applicable for 1-D structures. Using a combination of one-dimensional filter structures, 2-D fiber-optic filters can be constructed. The relationship between the fiber-optic model and the mathematical model has been linked to allow quick implementation. Using the developed methodologies, multi-dimensional coherent photonic signal processors can be designed.
机译:光纤信号处理系统的超高带宽特性可以为计算上要求很高的二维信号处理应用程序提供必要的处理能力。迄今为止,光纤信号处理技术尚未应用于二维信号处理领域。进一步地,集成光学和集成光子学的成熟领域以及纳米光子学的最新发展为光子领域的光波处理提供了创新的结构。本文是关于多维光子信号处理的三个部分系列的第二部分,旨在整合离散信号处理和光纤信号处理,集成光子和/或可能的纳米光子领域,以建立基于哪种物理系统的方法论。可以实现。为了实现有效的相干光波信号处理,提出了几种光子信号处理(PSP)体系结构。尽管结构最初是为2-D处理开发的,但它们也适用于1-D结构。使用一维滤波器结构的组合,可以构造二维光纤滤波器。光纤模型和数学模型之间的关系已经链接在一起,可以快速实施。使用开发的方法,可以设计多维相干光子信号处理器。

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