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Optical Code Division Multiple Access coder/decoder pairs based on temporal optical pulse shaping with fiber Bragg Gratings and electrooptic modulators

机译:基于纤维布拉格光栅和电光调制器的时间光脉冲整形光学码分割多址编码器/解码器对

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This paper presents recent proposals that have been made in the field of optical pulse shaping techniques based on the space-time duality, with an especial attention to their application for the design of encoder/decoder pairs in all-fibre Optical Code Division Multiple Access (OCDMA) systems. Two different proposals are presented, one based on an Optical Fourier Transformer using a dispersive media and the other based on the temporal self-imaging effect. Fiber Bragg Gratings are used as dispersive elements and electro-optic modulators for the amplitude or phase coding, allowing the electrical reconfiguration of the codes. Experimental results, both for coherent and incoherent schemes, are shown for the two systems transmitting at data rates of 1.25 Gbps and 10 Gbps respectively with a fixed codification rate of 10 Gcps and using a subset of the Hadamard codes with a length of 8 chips.
机译:本文提出了最近在光脉冲整形技术领域进行的基于时空二元性,特别关注其在全光纤光学码分区多次访问中的编码器/解码器对的应用应用程序的应用( OCDMA)系统。呈现了两个不同的提案,基于光学傅里叶变压器,基于时间自成像效应,基于光学傅立叶变压器。光纤布拉格光栅用作用于幅度或相位编码的分散元件和电光调制器,允许码的电力重新配置。用于相干和非相干方案的实验结果,用于分别以10GCP的固定编码率和10Gbps的数据速率传输到10Gbps的数据速率,并使用长度为8个芯片的Hadamard代码的子集。

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